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The method uses aluminum foil HPTLC plates coated with silica gel 60F254 as stationary phase and hexane—ethyl acetate—glacial acetic acid 7.5:2.5:0.5 (v\u002Fv) as mobile phase. Densitometric analysis of dexibuprofen and the internal standard (aceclofenac) was performed in reflectance mode at 217 nm. The system was found to give compact bands for dexibuprofen (RF 0.50). Linear regression analysis of the calibration data revealed a good linear relationship between response and concentration in the range 50–300 ng per band (r2 = 0.9902). The method was validated for precision, accuracy, recovery, and robustness. The method has been successfully applied to analysis of an oral solid dosage formulation.",{"EN":185,"VI":186},"Validated HPTLC Method of Analysis of Dexibuprofen in its Formulation","Phương pháp HPTLC đã thẩm định để phân tích dexibuprofen trong dạng bào chế",{"VOID":188},"A.J. Hutt and F. Caldwell, J. Pharm. Pharmacol. 35 (1983) 693–704.\nE.J.D. Lee, K. Williams, R. Day, G. Graham and D. Champion, Brit. J. Clin. Pharm. 19 (1985) 669–674.\nH. Cheng, J.D. Rogers, J.L. Demetriades, S.D. Holland and E. Depuy, Pharm. Res. 11 (1994) 824–830.\nA.D. Hulst, P. Augustijns, S. Arens, L. Van Parijs, S. Colson, N. Verbeke and R. Kinget, J. Chromatogr. Sci. 34 (1996) 276–281.\nJ. Krzek, M. Starek, and D. Jelonkiewicz, Chromatographia 62 (2005) 653–657.\nP.D. Sethi, Identification of Drugs in Pharmaceutical Formulations by Thin Layer Chromatography, CBS Publisher, New Delhi, 1992.\nC. Jean Tsao Thomas and S. Savage, Dev. and Ind. Pharm. 11 (1985) 1123–1131.\nYau Yi Lau, Dr. Dev. and Ind. Pharm. 19 (1996) 2143–2153.\nH. Thomas Karnes, Kusuma Rajasekharaiah, E. Ralph Small and Don Farthing, Dr. Dev. and Ind. Pharm. 11 (1988) 489–499.\nICH, Q2B Validation of Analytical Procedure: Methodology, in: Proceedings of the International Conference on Harmonization, Geneva, March 1996.\nICH Guidance on Analytical Method Validation, in: Proceedings of the International Convention on Quality for the Pharmaceutical Industry, Toronto, Canada, September 2002.",{"VOID":190},"10.1556\u002FJPC.22.2009.3.9","PUBLICATION","VERIFIED","2025-02-18T01:15:45.727+00:00","Auto 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Meyyanathan",{"id":229,"sortIndex":109,"researcher":20,"roles":230,"affiliations":231,"properties":240,"displayName":242,"givenName":20,"familyName":20},"33071eaf-6514-4a81-a43b-245a6ed7d0d8",[202],[232],{"id":233,"sortIndex":21,"affiliation":234,"properties":20},"e484b7c5-fc70-43bb-bc36-5cd8bd1bb908",{"id":233,"createTime":20,"updateTime":20,"relativeEntities":235,"slug":20,"properties":236,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":239,"statistic":20},[],{"title":237},{"VI":238},"JSS College of Pharmacy, TIFAC CORE, Ooty, Ootacamund, India",[],{"title":241},{"VI":242},"Nithyanantham 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attempt was made to develop and validate a simple, accurate high-performance thin-layer chromatographic (HPTLC) method for the simultaneous determination of diosmin, hesperidin, and ascorbic acid in pharmaceutical preparations. Analysis was performed on 10 cm × 20 cm aluminum-backed plates coated with 0.2 mm layers of silica gel 60 F254 (Merck, Germany). CAMAG TLC Scanner III was used for UV densitometric scanning. The used HPTLC system was found to give sharp, symmetrical, and well-resolved peaks at RF values of 0.34 ± 0.02, 0.40 ± 0.04, and 0.56 ± 0.03, and linearity was found in the ranges 100–800 ng\u002Fspot (r2 = 0.9985), 100–800 ng\u002Fspot (r2 = 0.9966), and 50–400 ng\u002Fspot (r2 = 0.9951) for diosmin, hesperidin, and ascorbic acid, respectively.",{"EN":358,"VI":359},"Densitometric-High-Performance Thin-Layer Chromatographic Estimation of Diosmin, Hesperidin, and Ascorbic Acid in Pharmaceutical Formulations","Định lượng diosmin, hesperidin và acid ascorbic trong các dạng bào chế dược phẩm bằng sắc ký lớp mỏng hiệu năng cao đo mật độ quang",{"VOID":361},"A.M. El Shafae, M.M. El Domiaty, J. Pharm. Biomed. Anal. 26 (2001) 539–545.\nA.A. Ramelet, Angiology 52 (2001) S49–S56.\nP.D. Smith, J. Vasc. Res. 36 (1999) 24–36.\nJ.J. Bergan, G.W. Schmid-Schonbein, S. Takase, Angiology 52 (2001) S43–S47.\nC. Le Devehat, T. Khodabandehlou, M. Vimeux, C. Kempf, Int. J. Microcirc.: Clin. Exp. 17 (1997) 27–33.\nJ.A. Manthey, Microcirculation 7 (2000) S29–S34.\nK. Buckshee, D. Takkar, N. Aggarwal, Int. J. Gynecol. Obstet. 57 (1997) 145–151.\nA. Hirata, Y. Murakami, M. Shoji, Y. Kadoma, S. Fujisawa, Anticancer Res. 25 (2005) 3367–3374.\nA. Garg, S. Garg, L.J. Zaneveld, A.K. Singla, Phytother. Res. 15 (2001) 655–669.\nA.S. Fragaakis, C. Thomson, The Health Professional’s Guide to Popular Dietary Supplements, 3rd edn. American Dietetic Association, Chicago, 2007.\nInstitute of Medicine. Food and Nutrition Board. Dietary Reference Intakes for Vitamin C, Vitamin E, Selenium, and Carotenoids. National Academy Press, Washington, DC, 2000.\nL. Cornara, C. D’Arrigo, F. Pioli, B. Borghesi, C. Bottino, E. Patrone, M.G. Mariotti, Plant Biosyst. 143 (2009) 283–292.\nF.I. Kanaze, C. Gabrieli, E. Kokkalou, M. Georgarakis, I. Niopas, J. Pharm. Biomed. Anal. 33 (2003) 243–249.\nY. Sun, J. Wang, S. Gu, Z. Liu, Y. Zhang, X. Zhang, Molecules 15 (2010) 5378–5388.\nK. Li, J. Yuan, W. Su, Yakugaku Zasshi 126 (2006) 1185–1190.\nL. Sawant, B. Prabhakar, N. Pandita, J. Anal. Bioanal. Tech. 1 (2010) 111.\nY. Shimada, S. Ko, Chugokugakuen J. 5 (2006) 13–16.\nV. Nour, I. Trandafir, M.E. Ionica, Not. Bot. Horti Agrobot. Cluj-Napoca 38 (2010) 44–48.\nL. Tong, D. Zhou, J. Gao, Y. Zhu, H. Sun, K. Bi, J. Pharm. Biomed. Anal. 58 (2012) 58–64.\nZ. Janeczko, U. Hubicka, J. Krzek, I. Podolak, J. Planar Chromatogr. 16 (2003) 377–380.\nZ. Janeczko, U. Hubicka, J. Krzek, Chem. Anal. (Warsaw) 49 (2004) 309–316.\nE. Shawky, J. Planar Chromatogr. 25 (2012) 138–144.\nG.S. Chakraborthy, Pharm. Anal. 1 (2009) 82–85.\nM.S. Kondawar, K.G. Kamble, D.S. Mali, Int. J. Pharm. Tech Res. 3 (2011) 1593–1599.\nInternational Conference on Harmonisation (ICH) of Technical Requirements for Registration of Pharmaceuticals for Human Use: Harmonised Triplicate Guideline on Validation of Analytical Procedures: Methodology, Recommended for Adoption at Step 4 of the ICH Process, ICH Steering Committee, IFPMA, Geneva, November 1996.\nB.P. Jackson, D.W. Snowdon, Atlas of Microscopy of Medicinal Plants, Culinary Herbs and Spices. Belhaven Press, Pinter Publisher, London, 1990, 26–27.",{"VOID":363},"10.1556\u002FJPC.26.2013.4.8","2025-02-14T05:44:35.735+00:00",[196],"https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F26\u002F4\u002Farticle-p336.xml",[368,383,396,411],{"id":369,"sortIndex":21,"researcher":20,"roles":370,"affiliations":371,"properties":380,"displayName":382,"givenName":20,"familyName":20},"e03592fb-9627-4109-963e-697214e5c3a2",[202],[372],{"id":373,"sortIndex":21,"affiliation":374,"properties":20},"49ad7a98-026e-46ab-a8f9-c6c85d6e8243",{"id":373,"createTime":20,"updateTime":20,"relativeEntities":375,"slug":20,"properties":376,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":379,"statistic":20},[],{"title":377},{"VI":378},"Department of Pharmacognosy, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia",[],{"title":381},{"VI":382},"Areej M. Al-Taweel",{"id":384,"sortIndex":150,"researcher":20,"roles":385,"affiliations":386,"properties":393,"displayName":395,"givenName":20,"familyName":20},"f709bbfd-f456-4ff2-be99-b734a808d89a",[202],[387],{"id":373,"sortIndex":21,"affiliation":388,"properties":20},{"id":373,"createTime":20,"updateTime":20,"relativeEntities":389,"slug":20,"properties":390,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":392,"statistic":20},[],{"title":391},{"VI":378},[],{"title":394},{"VI":395},"Saleh I. 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UA and OA were analyzed qualitatively and quantitatively by high-performance thin-layer chromatography (HPTLC). The thin layers chosen were high-performance thin-layer G plates. Sample spots were pretreated in situ with iodine–dichloromethane solution with cyclohexane–ethyl acetate–methanol (8.2:1.8:0.5, V\u002FV) as developing agent upward. The plates were immersed in a 1% sulphuric acid–ethanol solution, dried and heated at 105 °C for 30 min to develop the color and then it was scanned at the wavelength of 530 nm. The results revealed that the RF values for UA and OA were 0.43 ± 0.05 and 0.62 ± 0.05, respectively, with a linear range of 0.2595–3.633 μg and 0.2505–1.503 μg, with correlation coefficients of 0.9980 and 0.9954, representing a sound linear relationship. The limits of detection (LOD) for UA and OA were 10 and 20 ng, with their limits of quantification (LOQ) of 33 and 67 ng, respectively. Average recoveries of 101.38% and 100.13% were obtained with relative standard deviations (RSD) of 2.55% and 2.74%. In summary, it can be concluded that UA and OA in P. granatum L. flowers could be completely separated by in situ pretreatment, and this chromatographic method could quickly and accurately determine the content of UA and OA in P. granatum L. flowers.",{"EN":502,"VI":503},"Simultaneous qualitative and quantitative analyses of ursolic acid and oleanolic acid in Punica granatum L. (Pomegranate) flowers by high-performance thin-layer chromatography","Phân tích định tính và định lượng đồng thời ursolic acid và oleanolic acid trong hoa Punica granatum L. (lựu) bằng sắc ký lớp mỏng hiệu năng cao",{"VOID":505},"Liu ZZ, Liu Y, Song N, Yang GD (2020) Study on chemical constituents of the essential oil by GS–MS and the aroma enhanced by β-glucosidase on pomegranate flowers. For By-Product Spec China 2:1–4. https:\u002F\u002Fdoi.org\u002F10.13268\u002Fj.cnki.fbsic.2020.01.001\nMáthé Á (ed) (2018) Medicinal and aromatic plants of the world. Springer, Basel\nFu QJ (2014) Study of the main secondary metabolites and biological activity of pomegranate flowers. Dissertation, Shandong Agricultural University\nDastjerdia EV, Monadib E, Khalighic HR, Torshabid M (2016) Down-regulation of glycosyl transferase genes in Streptococcus mutans by Punica granatum L. flower and Rhus coriaria L. fruit water extracts. Iran J Pharm Res 15:513–519\nKhan I, Rahman H, Abd El-Salam NM, Tawab A, Hussain A, Khan TA, Khan UA, Qasim M, Adnan M, Azizullah A, Murad W, Jalal A, Muhammad N, Ullah R (2017) Punica granatum peel extracts: HPLC fractionation and LC–MS analysis to quest compounds having activity against multidrug resistant bacteria. BMC Complement Altern Med 17:1–6. https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs12906-017-1766-4\nVini R, Sreeja S (2015) Punica granatum and its therapeutic implications on breast carcinogenesis: a review. BioFactors 41(2):78–89. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fbiof.1206\nZhou CH, Jin C, Zhao YH, Xiong Y, Li T, Zhang L (2020) Chemical constituents from the flowers of Punica granatum. Chin Trad Patent Med 42:102–106. https:\u002F\u002Fdoi.org\u002F10.3969\u002Fj.issn.1001-1528.2020.01.022\nJia WX, Zhang LH, Li XR, Meng J, Ai ZD, Li XY (2015) Analysis of the chemical constituents of essential oil from pomegranate flower and evaluation of its free radical scavenging ability. Food Sci 36:152–153https:\u002F\u002Fdoi.org\u002F10.75061spkxl002-6630-201524027\nErbano M, Ehrenfried CA, Stefanello ME, Dos Santos EP (2012) Morphoanatomical and phytochemical studies of Salvia lachnostachys (Lamiaceae). Microsc Res Tech 75:1737–1744. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fjemt.22125\nTortora L, Biocca P, Sotgiu G, Notaristefani Fd, Urbinia M, Ioeled M (2016) Oleanolic and ursolic acid in dammar and mastic resin: isomer discrimination by using ToF–SIMS and multivariate statistics. Surf Interface Anal 48:398–403. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fsia.5991\nXu ZL (2020) Simultaneous determination of hederagenin, oleanolic acid and ursolic acid in flowers of Campsis grandiflora by HPLC. J Chin Prescr Drug 18:23–24\nHuang TZ, Ding WN, Zhang LJ, Zheng HR, He XL (2020) Establishment of HPLC analytical method for ursolic acid alcoholextract of Clerodendranthus spicatus and its methodology. Shandong Chem Ind 49:93–97. https:\u002F\u002Fdoi.org\u002F10.19319\u002Fj.cnki.issn.1008-021x.2020.19.038\nFu YL, Gao L, Zhang DX, Zhang M, Zheng ZJ, Zhang RY (2020) Advances in extraction,separation and determination of oleanolic acid and ursolic acid. Food Res Dev 41:196–199. https:\u002F\u002Fdoi.org\u002F10.12161\u002Fj.issn.1005-6521.2020.02.034\nKaur P, Gupta RC, Dey A, Malik T, Pandey DK (2020) Validation and quantification of major biomarkers in “Mahasudarshan Churna” - an ayurvedic polyherbal formulation through high-performance thin-layer chromatography. BMC Complement Med Ther 20:1–11. https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs12906-020-02970-z\nZeng Y, Liu JJ, Tian SG (2019) Qualitative and quantitative analyses of gallic acid and methyl gallate in guyinye residue extracts and turkish gall cream by high-performance thin-layer chromatography. J Planar Chromatogr Mod TLC 32:365–370. https:\u002F\u002Fdoi.org\u002F10.1556\u002F1006.2019.32.5.3\nZhang K, Wu WX, Tian SG (2020) Comparative study on the determination of ethyl p-methoxycinnamate in Kaempferia galanga rhizome by HPTLCS and HPLC. J Planar Chromatogr Mod TLC 33:51–57. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00764-019-00011-1\nHe T, Zeng Y, Zhou XY (2018) Qualitative and quantitative analysis of hydroxysafflor yellow a in safflower by using high-performance thin-layer chromatography. J Planar Chromatogr Mod TLC 31:129–134. https:\u002F\u002Fdoi.org\u002F10.1556\u002F1006.2018.31.2.6\nHe FY, Li J, He Y, Zheng XW, Dai Z, Dai SC (2019) Comparison of three LOD determination approaches in TLC. Chin Pharm J. https:\u002F\u002Fdoi.org\u002F10.11669\u002Fcpj.2019.18.012\nDai Q, Luo X, Ye QB (2019) Determination of oleanolic acid and ursolic acid in Chaenomelis Fructus by HPLC. Asia-Pac Trad Med 15:81–85. https:\u002F\u002Fdoi.org\u002F10.11954\u002Fytctyy.201906026\nDuan HX, Liu XP, Chen X, Zhang Y, Chu MJ, Luo WY (2019) Simultaneous determination of six organic acids in Hedyotis diffusa by HPLC. J Chin Med Mater 42:1842–1845. https:\u002F\u002Fdoi.org\u002F10.13863\u002Fj.issn1001-4454.2019.08.027\nHuang XL, He XF, Zhou N, Yang WW, Yang Q, Wang Q, Guo DQ (2020) Simultaneous determination of three triterpenic acids in Lycopus lucidus Turcz. var. hirtus regel by high-performance liquid chromatography. Sci Technol Food Ind 41:273–286. https:\u002F\u002Fdoi.org\u002F10.13386\u002Fj.issn1002-0306.2020.11.042\nSharifiyan F, Mirjalili SA, M. Fazilati M, Poorazizi E, Habibollahi S, (2019) Variation of ursolic acid content in flowers of ten Iranian pomegranate (Punica granatum L.) cultivars. BMC Chem 13:80. https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs13065-019-0598-3\nHu JM, Jiang XH, Jiang ML (2013) Determination of oleanolic acid and ursolic acid in erzhi pills by double wavelength thin layer scanning. Chin Trad Pat Med 35(6):1343–1345. https:\u002F\u002Fdoi.org\u002F10.3969\u002Fj.issn.1001-1528.2013.06.058\nHajinisha LGR, Ma GZ (2020) Identification of triterpenoids including tormentic acid, ursolic acid and oleanolic acid in Cydonia oblonga by thin-layer chromatography. J Food Saf Qual 11(7):2116–2121. https:\u002F\u002Fdoi.org\u002F10.19812\u002Fj.cnki.jfsq11-5956\u002Fts.2020.07.016\nLi WQ, Jiang ZO, Tang TT (2016) Synchronization analysis of ursolic acid and oleanolic acid in Flos Ixorae Chinensis. Guiding J Trad Chin Med Pharmacol 22(17):40–42. https:\u002F\u002Fdoi.org\u002F10.13862\u002Fj.cnki.cn43-1446\u002Fr.2016.17.013",{"VOID":507},"10.1007\u002Fs00764-021-00092-x",[196],"https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs00764-021-00092-x",[511,526,539],{"id":512,"sortIndex":21,"researcher":20,"roles":513,"affiliations":514,"properties":523,"displayName":525,"givenName":20,"familyName":20},"d267682a-4486-4af5-8d65-40923b409d43",[202],[515],{"id":516,"sortIndex":21,"affiliation":517,"properties":20},"51374670-b81b-415a-be98-01ca79081eff",{"id":516,"createTime":20,"updateTime":20,"relativeEntities":518,"slug":20,"properties":519,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":522,"statistic":20},[],{"title":520},{"VI":521},"College of TCM, Xinjiang Medical University, Urumqi, China",[],{"title":524},{"VI":525},"Wenxia 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simple, rapid, quantitative, and validated high-performance thin-layer chromatographic (HPTLC) method has been developed for the simultaneous estimation of quercetin (QU), rutin (RU), and gallic acid (GA) in the methanolic extract of Amaranthus tricolor L. aerial parts. Densitometric analysis of QU, RU, and GA were carried out in the absorbance mode at 254 nm. The method gave spot at RF 0.49, 0.14, and 0.28 corresponding to quercetin, rutin, and gallic acid, respectively. The limit of detection (22.31, 14.12, and 16.24 ng per spot) and limit of quantification (67.80, 55.32, and 52.54 ng per spot), respectively, were confirmed with the mobile phase toluene—ethyl acetate—formic acid in a ratio of 7:5:1 (v\u002Fv). Linear regression analysis data for the calibration plot for QU, RU, and GA showed a good linear relationship with a correlation coefficient r > 0.9955 in the concentration range of 200–800 ng per spot, 200–500 ng per spot, and 200–600 ng per spot, respectively. The method was validated for linearity, accuracy, precision, detection, and quantification limits, specificity, and robustness as per the International Conference on Harmonization (ICH) guidelines. The proposed validated high-performance thin-layer chromatographic method provides a novel approach for the quality control and standardization of A. tricolor L.",{"EN":621,"VI":622},"Validated High-Performance Thin-Layer Chromatographic Method for the Simultaneous Determination of Quercetin, Rutin, and Gallic Acid in Amaranthus tricolor L.","Phương pháp sắc ký lớp mỏng hiệu năng cao đã thẩm định để định lượng đồng thời quercetin, rutin và axit gallic trong Amaranthus tricolor L.",{"VOID":624},"H. Li, Z. Deng, R. Liu, H. Zhu, J. Dravis, M. Marcone, Y. Sung, R. Tsao J. Food Compos. Anal., 37 (2015) 75–81.\nK. Nahar, F. Kabir, P. Islam, Md. M. Rahman, Md. A.A. Mamun, Md. Faruk, N. Subhan, G.M.S. Rahman, H.M. Reza, Md. A. Alam Biomed. Pharmacother., 103 (2018) 1154–1162.\nM. Rahmatullah, M. Hosain, S. Rahman, S. Rahman, M. Akter, F. Rahman, F. Rehana, M. Munmun, M.A. Kalpana Afr. J. Tradit. Complement. Altern. Med., 10 (2013) 408–411.\nTharun, K.N. Rao, S.K. Padhy, S.K. Dinakaran, D. Banji, H. Avasarala, S. Ghosh, M.S. Prasad Asian J. Chem., 24 (2012) 455–460.\nU.K.S. Khanama, S. Obab, E. Yanaseb, Y. Murakami J. Funct. Foods, 4 (2012) 979–987.\nS. Kushwaha, P. Chawla, A. Kochhar J. Food Sci. Technol., 51 (2014) 3464–3469.\nP. Rawat, P.K. Singh, V. Kumar Biomed. Pharmacother., 96 (2017) 1453–1464.\nR. Routray, M. Kar, R.K. Sahu Int. J. Phar m. Pharm. Sci., 5 (2013) 232–235.\nA.C. Clemente, P.V. Desai Trop. J. Pharm. Res., 10 (2011) 595–602.\nV.C. Devaraj, B.G. Krishna Chin. J. Nat. Med., 11 (2013) 0145–0148.\nS. Pulipati, P.S. Babu, L. Narasu Afr. J. Microbiol. Res., 9 (2015) 1381–1385.\nS. Aneja, M. Vats, S. Aggarwal, S. Sardana J. Ayurveda Integr. Med., 4 (2013) 211–215.\nB. Jayaprakasam, Y. Zhang, M.G. Nair J. Agric. Food Chem., 52 (2004) 6939–6943.\nP.K. Mukherjee, A. Wahile, V. Kumar, S. Rai, K. Mukherjee, B.P. Saha Drug Inf. J., 40 (2006) 131–139.\nS. Pandit, P.K. Mukherjee, A. Gantait, S. Ponnusankar, S. Bhadra J. Planar Chromatogr., 24 (2011) 541–544.\nICH Validation of analytical procedures: text and methodology, Q2 (R1), International Conference on Harmonization, Geneva, November, 2005.",{"VOID":626},"10.1556\u002F1006.2019.32.2.7","2025-01-04T03:12:59.577+00:00",[196],"https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F32\u002F2\u002Farticle-p121.xml",[631,646,659,672],{"id":632,"sortIndex":21,"researcher":20,"roles":633,"affiliations":634,"properties":643,"displayName":645,"givenName":20,"familyName":20},"4bd318ce-5d81-487a-bef7-0dfbba3154e5",[202],[635],{"id":636,"sortIndex":21,"affiliation":637,"properties":20},"b50f3a19-2a47-47a9-8468-0be60c87ccc5",{"id":636,"createTime":20,"updateTime":20,"relativeEntities":638,"slug":20,"properties":639,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":642,"statistic":20},[],{"title":640},{"VI":641},"School of Natural Product Studies, Department of Pharmaceutical Technology, Jadavpur University, Kolkata, India",[],{"title":644},{"VI":645},"Sayan Biswas",{"id":647,"sortIndex":150,"researcher":20,"roles":648,"affiliations":649,"properties":656,"displayName":658,"givenName":20,"familyName":20},"8e017bae-316e-4288-8785-8509e9742c5a",[202],[650],{"id":636,"sortIndex":21,"affiliation":651,"properties":20},{"id":636,"createTime":20,"updateTime":20,"relativeEntities":652,"slug":20,"properties":653,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":655,"statistic":20},[],{"title":654},{"VI":641},[],{"title":657},{"VI":658},"Ranjit K. Harwansh",{"id":660,"sortIndex":109,"researcher":20,"roles":661,"affiliations":662,"properties":669,"displayName":671,"givenName":20,"familyName":20},"275c76bc-2c36-4b2b-b094-47296e90c53d",[202],[663],{"id":636,"sortIndex":21,"affiliation":664,"properties":20},{"id":636,"createTime":20,"updateTime":20,"relativeEntities":665,"slug":20,"properties":666,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":668,"statistic":20},[],{"title":667},{"VI":641},[],{"title":670},{"VI":671},"Amit Kar",{"id":673,"sortIndex":245,"researcher":20,"roles":674,"affiliations":675,"properties":682,"displayName":684,"givenName":20,"familyName":20},"9705cd93-f846-49bb-8e13-4b030e64a385",[202],[676],{"id":636,"sortIndex":21,"affiliation":677,"properties":20},{"id":636,"createTime":20,"updateTime":20,"relativeEntities":678,"slug":20,"properties":679,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":681,"statistic":20},[],{"title":680},{"VI":641},[],{"title":683},{"VI":684},"Pulok K. Mukherjee",{"url":629,"publisher":686,"properties":736},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":687,"slug":10,"properties":688,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":692,"manageAffiliations":705,"indexDatabases":716,"url":20,"thumbnailPath":20,"statistic":731,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":689,"title":690,"eissn":691},{"VOID":13},{"EN":15},{"VOID":17},[693,697,701],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":694,"label":695,"description":696,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":698,"label":699,"description":700,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":702,"label":703,"description":704,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[706,711],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":707,"slug":20,"properties":708,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":710,"statistic":20},[],{"title":709},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":712,"slug":20,"properties":713,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":715,"statistic":20},[],{"title":714},{"EN":54},[56],[717,724],{"id":59,"indexDatabase":718,"url":70,"indexYears":71,"academicFieldIds":723,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":719,"label":720,"description":721,"key":67,"publicationTags":722,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":725,"url":91,"indexYears":20,"academicFieldIds":730,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":726,"label":727,"description":728,"key":87,"publicationTags":729,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":732,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":733,"totalCitation":129,"totalCitationByYear":734,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":735,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":737,"volume":739},{"VOID":738},"121-126",{"VOID":740},"32","2019-04-01",2019,[76,89],{"id":745,"createTime":746,"updateTime":747,"relativeEntities":748,"slug":749,"properties":750,"entityType":191,"verifyStatus":192,"verifyTime":761,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":762,"fullTextUrl":20,"authors":763,"publicationType":287,"publisherRelationship":843,"citationCount":20,"citationInfo":20,"publishDate":899,"publishYear":900,"citationAnalyzeStatus":901,"lastCitationAnalyze":747,"indexDatabases":902,"openAccess":20,"references":20,"isForceReanalyzing":347},"86d2d770-fd71-4fc6-8138-84889d6dd48a","2023-12-23T09:19:25.059+00:00","2026-08-13T22:01:13.519+00:00",[],"Thin-layer-chromatographic-enantioresolution-of-gatifloxacin-using-levocetirizine-and-levosalbutamol-as-chiral-selectors",{"abstract":751,"title":753,"gsPaper":755,"references":757,"doi":759},{"EN":752},"In this work, we extracted, purified, and characterized two active pharmaceutical ingredients, levocetirizine and levosalbutamol (from commercial tablet formulations), and used them as chiral selectors for enantioresolution of gatifloxacin through thin-layer chromatographic (TLC) method. The silica gel was impregnated with a chiral selector for the enantioresolution of gatifloxacin. The mobile phase used was a combination of acetonitrile, methanol, and triethylamine (4:4:2, V\u002FV, pH 9) and (2:6:2, pH 9), respectively, with levocetirizine and levosalbutamol (as chiral selector in stationary phase at pH 5). The detection limit for enantiomers of gatifloxacin was observed to be 4.2 and 4.9 μg spot‒1, respectively, with levocetirizine and levosalbutamol as chiral selectors. This is the first report on levocetirizine and levosalbutamol as chiral selectors for TLC resolution of gatifloxacin enantiomers.",{"EN":754},"Thin-layer chromatographic enantioresolution of gatifloxacin using levocetirizine and levosalbutamol as chiral selectors",{"VOID":756},"[\"397890379561690085\"]",{"VOID":758},"Brooks WH, Guida WC, Daniel KG (2011) The significance of chirality in drug design and development. Curr Top Med Chem 11:760–770. https:\u002F\u002Fdoi.org\u002F10.2174\u002F156802611795165098\nVashistha VK (2022) Detection and remediation of chiral pharmaceuticals from wastewater: a review. Chirality 34:833–847. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fchir.23437\nVashistha VK, Sethi S, Tyagi I, Das DK (2022) Chirality of antidepressive drugs: an overview of stereoselectivity. Asian Biomed (Res Rev News) 16:55–69. https:\u002F\u002Fdoi.org\u002F10.2478\u002Fabm-2022-0008\nKumar Vashistha V (2022) Chiral analysis of pharmaceuticals using NMR spectroscopy: a review. Asian J Org Chem. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fajoc.202200544\nChankvetadze B (2021) Application of enantioselective separation techniques to bioanalysis of chiral drugs and their metabolites. Trends Anal Chem 143:116332. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.trac.2021.116332\nPinto MMM, Fernandes C, Tiritan ME (2020) Chiral separations in preparative scale: a medicinal chemistry point of view. Molecules 25:1931. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fmolecules25081931\nMartens J, Bhushan R (2023) Direct thin layer chromatographic enantioseparation of active pharmaceutical ingredients via non-covalent diastereomers. Sep Purif Rev. https:\u002F\u002Fdoi.org\u002F10.1080\u002F15422119.2023.2191328\nAgbaba D, Čarapić M (2023) Applications of thin-layer chromatography in the pharmaceutical industry. In: Poole CF (ed) Instrumental thin-layer chromatography. Elsevier, Amsterdam, pp 519–573\nAl-Abdullah ES (2012) Gatifloxacin. Profiles Drug Subst Excip Relat Methodol 37:183–243. https:\u002F\u002Fdoi.org\u002F10.1016\u002FB978-0-12-397220-0.00005-2\nSousa J, Alves G, Abrantes J, Fortuna A, Falcão A (2012) Analytical methods for determination of new fluoroquinolones in biological matrices and pharmaceutical formulations by liquid chromatography: a review. Anal Bioanal Chem 403:93–129. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00216-011-5706-8\nGrasela DM (2000) Clinical pharmacology of gatifloxacin, a new fluoroquinolone. Clin Infect Dis 31(Suppl 2):S51-58. https:\u002F\u002Fdoi.org\u002F10.1086\u002F314061\nNirogi R, Kota S, Vennila S, Lingavarapu B, Kandikere V, Mudigonda K, Vurimindi HB (2010) High-performance liquid chromatographic method for the separation of enantiomeric gatifloxacin. J Chromatogr Sci 48:100–103. https:\u002F\u002Fdoi.org\u002F10.1093\u002Fchromsci\u002F48.2.100\nMachida M, Izawa S, Hori W, Ishida R, Uchida H (1999) Pharmacokinetics of gatifloxacin, a new quinolone, and its enantiomers: II. Enantioselective method for the determination of gatifloxacin and its application to pharmacokinetic studies in animals. Nihon Kagaku Ryoho Gakkai Zasshi 47:124–130\nZhou S, Ouyang J, Baeyens WR, Zhao H, Yang Y (2006) Chiral separation of four fluoroquinolone compounds using capillary electrophoresis with hydroxypropyl-β-cyclodextrin as chiral selector. J Chromatogr A 1130(2):296–301\nNaini AS, Ghorbani J, Mazloom E (2016) Comparative study of apo-cetirizine single therapy and intermittent sequential therapy with cetirizine, loratadine and chlorpheniramine in allergic rhinitis. Indian J Otolaryngol 68:329–333\nVan Wart SA, Mager DE (2012) Clinical pharmacokinetics and pharmacodynamics of stereoisomeric drugs. In: Jozwiak K, Lough WJ, Wainer IW (eds) Drug stereochemistry. CRC Press, Boca Raton, pp 216–249\nPatel M, Thomson NC (2012) Levosalbutamol for chronic obstructive pulmonary disease: a treatment evaluation. Expert Opin Pharmacother 13(7):1069–1075. https:\u002F\u002Fdoi.org\u002F10.1517\u002F14656566.2012.662221\nBoulton DW, Fawcett JP (2001) The pharmacokinetics of levosalbutamol: what are the clinical implications? What are the clinical implications? Clin Pharmacokinet 40(1):23–40. https:\u002F\u002Fdoi.org\u002F10.2165\u002F00003088-200140010-00003\nICH (1996) Q2B. Validation of analytical procedure: methodology. International Conference on Harmonization, Geneva\nICH (2005) Q2A. Validation of analytical procedures: text and methodology. In: International Conference on Harmonization, Geneva\nVashistha VK, Bhushan R (2015) Chirality recognition for assessing the enantiomeric purity of betaxolol. Tetrahedron 26(5–6):304–311. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.tetasy.2015.01.017\nTang Y (1996) Significance of mobile phase composition in enantioseparation of chiral drugs by HPLC on a cellulose-based chiral stationary phase. Chirality 8:136–142. https:\u002F\u002Fdoi.org\u002F10.1002\u002F(sici)1520-636x(1996)8:1%3C136::aid-chir20%3E3.0.co;2-n\nDalgliesh CE (1952) The optical resolution of aromatic amino-acids on paper chromatograms. J Chem Soc 756:3940. https:\u002F\u002Fdoi.org\u002F10.1039\u002FJR9520003940",{"VOID":760},"10.1007\u002Fs00764-023-00244-1","2024-06-24T18:48:43.088+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs00764-023-00244-1",[764,779,794,811,828],{"id":765,"sortIndex":21,"researcher":20,"roles":766,"affiliations":767,"properties":776,"displayName":778,"givenName":20,"familyName":20},"b6ab017f-a27a-463e-95f6-e71f307de5ba",[202],[768],{"id":769,"sortIndex":21,"affiliation":770,"properties":20},"2a214b09-bdeb-4d83-a6b9-7493a4cff85e",{"id":769,"createTime":20,"updateTime":20,"relativeEntities":771,"slug":20,"properties":772,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":775,"statistic":20},[],{"title":773},{"VI":774},"Department of Chemistry, GLA University, Mathura, India",[],{"title":777},{"VI":778},"Vinod Kumar Vashistha",{"id":780,"sortIndex":150,"researcher":20,"roles":781,"affiliations":782,"properties":791,"displayName":793,"givenName":20,"familyName":20},"474431ea-c0f4-44db-ac24-3b596e2ac0f7",[202],[783],{"id":784,"sortIndex":21,"affiliation":785,"properties":20},"b28a992c-1d1b-49f7-b9ae-bc119c7abe6e",{"id":784,"createTime":20,"updateTime":20,"relativeEntities":786,"slug":20,"properties":787,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":790,"statistic":20},[],{"title":788},{"EN":789},"Department of Chemistry, Kalindi College, University of Delhi, Delhi, India",[],{"title":792},{"VI":793},"Renu Bala",{"id":795,"sortIndex":109,"researcher":20,"roles":796,"affiliations":797,"properties":806,"displayName":808,"givenName":20,"familyName":20},"68f7c3d1-a3d8-4458-96a4-ffd7afbb4b67",[202],[798],{"id":799,"sortIndex":21,"affiliation":800,"properties":20},"ed0a8233-e4ef-4040-adbb-a3f150d291c7",{"id":799,"createTime":20,"updateTime":20,"relativeEntities":801,"slug":20,"properties":802,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":805,"statistic":20},[],{"title":803},{"EN":804},"Department of Chemistry and Chemical Sciences, Central University of Himachal Pradesh, Kangra, India",[],{"title":807,"gsAuthor":809},{"VI":808},"Rajender Kumar",{"VOID":810},"[\"jen6iSUAAAAJ\"]",{"id":812,"sortIndex":245,"researcher":20,"roles":813,"affiliations":814,"properties":823,"displayName":825,"givenName":20,"familyName":20},"8b47beca-efe8-4d54-9624-2dc743f2ab48",[202],[815],{"id":816,"sortIndex":21,"affiliation":817,"properties":20},"f4103b06-69f5-41a6-b403-286d8f830fc7",{"id":816,"createTime":20,"updateTime":20,"relativeEntities":818,"slug":20,"properties":819,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":822,"statistic":20},[],{"title":820},{"VI":821},"School of Sciences, IFTM University, Moradabad, India",[],{"title":824,"gsAuthor":826},{"VI":825},"Himanshu Gupta",{"VOID":827},"[\"ax9c-0oAAAAJ\"]",{"id":829,"sortIndex":259,"researcher":20,"roles":830,"affiliations":831,"properties":840,"displayName":842,"givenName":20,"familyName":20},"82cbf521-78a7-45ef-b1a2-c65bd11c183b",[202],[832],{"id":833,"sortIndex":21,"affiliation":834,"properties":20},"f8138765-2f2b-4181-bc9c-f21f7eb997c0",{"id":833,"createTime":20,"updateTime":20,"relativeEntities":835,"slug":20,"properties":836,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":839,"statistic":20},[],{"title":837},{"VI":838},"Department of Chemistry, Faculty of Science, Agriculture and Engineering, University of Zululand, KwaDlangezwa, South Africa",[],{"title":841},{"VI":842},"Rajasekhar V. S. R. Pullabhotla",{"url":762,"publisher":844,"properties":894},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":845,"slug":10,"properties":846,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":850,"manageAffiliations":863,"indexDatabases":874,"url":20,"thumbnailPath":20,"statistic":889,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":847,"title":848,"eissn":849},{"VOID":13},{"EN":15},{"VOID":17},[851,855,859],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":852,"label":853,"description":854,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":856,"label":857,"description":858,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":860,"label":861,"description":862,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[864,869],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":865,"slug":20,"properties":866,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":868,"statistic":20},[],{"title":867},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":870,"slug":20,"properties":871,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":873,"statistic":20},[],{"title":872},{"EN":54},[56],[875,882],{"id":59,"indexDatabase":876,"url":70,"indexYears":71,"academicFieldIds":881,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":877,"label":878,"description":879,"key":67,"publicationTags":880,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":883,"url":91,"indexYears":20,"academicFieldIds":888,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":884,"label":885,"description":886,"key":87,"publicationTags":887,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":890,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":891,"totalCitation":129,"totalCitationByYear":892,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":893,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":895,"volume":897},{"VOID":896},"191-200",{"VOID":898},"36","2023-08-10",2023,"ERROR_IN_ANALYZE_CITATION",[76,89],{"id":904,"createTime":905,"updateTime":906,"relativeEntities":907,"slug":908,"properties":909,"entityType":191,"verifyStatus":192,"verifyTime":920,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":921,"fullTextUrl":20,"authors":922,"publicationType":287,"publisherRelationship":961,"citationCount":1017,"citationInfo":1018,"publishDate":1021,"publishYear":1019,"citationAnalyzeStatus":1022,"lastCitationAnalyze":1023,"indexDatabases":1024,"openAccess":20,"references":20,"isForceReanalyzing":347},"241c984d-c172-44fb-8158-6aff8ff8b5d8","2023-12-18T03:58:13.331+00:00","2026-07-25T14:57:21.566+00:00",[],"Thin-Layer-Chromatography-in-the-Analysis-of-Biologically-Active-Ionic-and-Ionizable-Compounds",{"abstract":910,"title":912,"gsPaper":914,"references":916,"doi":918},{"EN":911},"Ionic and ionizable solutes constitute a large group of compounds characterized with biological activity. Chromatographic analysis of these compounds is more difficult when compared to nonionic substances. This review focuses on different approaches used for the separation of basic and acidic substances by means of thin-layer chromatography. Biologically active basic compounds are more often used as prescribed drugs; therefore, chromatographic analysis of these substances was described in more detail when compared to acidic solutes. Direct stimulus to write this review was the 65th anniversary of Prof. Monika Waksmundzka-Hajnos’ birthday. Prof. Hajnos is known for her great contributions to chromatographic analysis of ionic solutes.",{"EN":913},"Thin-Layer Chromatography in the Analysis of Biologically Active Ionic and Ionizable Compounds",{"VOID":915},"[\"3173123779641203551\"]",{"VOID":917},"N. Dubey, A. Jain, A.K. Raghuwanshi, D.K. Jain, J. Planar Chromatogr. 25 (2012) 475–480.\nZ. Jaremicz, M. Luczkiewicz, M. Kisiel, R. Zárate, N. El Jaber-Vazdekis, P. Migas, Phytochem. Anal. 25 (2014) 29–35.\nS.L. Deore, M.A. Mohod, B.A. Baviskar, S.S. Khadabadi, Pharm. Methods 4 (2013) 11–15.\nH. Agrawal, N. Kaul, A.R. Paradkar, K.R. Mahadik, Talanta 61 (2003) 581–589.\nB. Spangenberg, A. Seigel, J. Kempf, W. Weinmann, J. Planar Chromatogr. 18 (2005) 336–343.\nS. Khatoon, M. Srivastava, A.K.S. Rawat, S. Mehrotra, J. Planar Chromatogr. 18 (2005) 364–367.\nB. Asghari, S.N. Ebrahimi, F. Mirzajani, Hassan Y. Aboul-Enein, J. Planar Chromatogr. 24 (2011) 419–422.\nD.B. Meshram, S.B. Bagade, M.R. Tajne, J. Planar Chromatogr. 21 (2008) 191–195.\nS.S. Kadukar, S.V. Gandhi, P.N. Ranjane, S.S. Ranher, J. Planar Chromatogr. 22 (2009) 425–428.\nM. Starek, M. Rejdych, J. Planar Chromatogr. 22 (2009) 399–403.\nV.D. Shirvi, K.P. Channabasavaraj, G.V. Kumar, T.T. Mani, J. Planar Chromatogr. 23 (2010) 369–372.\nA.A. Rajopadhye, A.S. Upadhye, A.M. Mujumdar, J. Planar Chromatogr. 24 (2011) 57–59.\nA.M.I. Mohamed, F.A.-F. Mohamed, S.A.-R. Ahmed, Y. Abduh, S. Mohamed, J. Planar Chromatogr. 26 (2013) 209–214.\nS.R. Dhaneshwar, N.G. Patre, M.V. Mahadik, Acta Chromatogr. 21 (2009) 83–93.\nG.M. Hadad, J.M. Badr, K. El-Nahriry, H.A. Hassanean, J. Chromatogr. Sci. 51 (2013) 258–265.\nR. Skibiński, G. Misztal, Ł. Komsta, A. Korólczyk, J. Planar Chromatogr. 19 (2006) 73–80.\nT. Tuzimski, J. Sobczyński, J. Liq. Chromatogr. 32 (2009) 1241–1258.\nT. Tuzimski, J. AOAC Int. 93 (2010) 1748–1756.\nD.A. Shah, R.S. Nakrani, S.L. Baldania, U.K. Chhalotiya, K.K. Bhatt, J. Planar Chromatogr. 25 (2012) 174–177.\nS. Mennickent, R. Fierro, M. Vega, M. De Diego, C.G. Godoy, C. Cifuentes, A. Miranda, J. Planar Chromatogr. 26 (2013) 358–362.\nB.B. Kumbhalkar, A.A. Rajopadhye, A.S. Upadhye, A cta C hromatogr. 24 (2009) 263–270.\nA.K. Doshi, B.N. Patel, Chagan N. Patel, J. Planar Chromatogr. 26 (2013) 62–66.\nA. Patel, A. Patwari B. Suhagia, J. Chromatogr. Sci. 51 (2013) 1–8.\nK.R. Mahadik, A.R. Paradkar, H. Agrawal, N. Kaul, J. Pharm. Biomed. Anal. 33 (2003) 545–552.\nN. Kaul, H. Agrawal, A.R. Paradkar, K.R. Mahadik, Il Farmaco 59 (2004) 729–738.\nS. Berkov, A. Pavlov, Phytochem. Anal. 15 (2004) 141–145.\nP. Bharati, A. Vinodini, A.S. Reddy, P.S. Devi, J. Planar C hromatogr. 23 (2010) 79–83.\nJ.R. Rao, M. Kumar, L. Sathiyanarayanan, S.S. Yadav, Vikas, J. Planar Chromatogr. 24 (2011) 140–144.\nS. Kongkiatpaiboon, V. Keeratinijakal, W. Gritsanapan, J. Chromatogr. Sci. 51 (2013) 430–435.\nS. Mennickent, R. Fierro, M. Vega, M. de Diego, C.G. Godoy, J. Planar Chromatogr. 24 (2011) 222–226.\nA. Varma, H. Padh, N. Shrivastava, J. Planar Chromatogr. 24 (2011) 406–411.\nD.M. Khatri, P.J. Mehta, J. Planar Chromatogr. 24 (2011) 412–418.\nL. Paillat, C. Périchet, S. Lavoine, U. Meierhenrich, X. Fernandez, J. Planar Chromatogr. 25 (2012) 23–29.\nE.A. Shikanga, I. Vermaak, A.M. Viljoen, J. Planar Chromatogr. 25 (2012) 283–289.\nM. Monforte-González, C. Guízar-González, J. Rubio-Piña, M. Carrillo-Pech, F. Vázquez-Flota, J. Planar Chromatogr. 25 (2012) 358–360.\nR.M. Youssef, E.F. Khamis, M.A. El-Sayed, M.M.A. Moneim, J. Planar Chromatogr. 25 (2012) 456–462.\nZ. Turkmen, S. Mercan, I. Bavunoglu, S. Cengiz, J. Planar Chromatogr. 26 (2013) 496–501.\nE. Shawky, J. Chromatogr. Sci. 52 (2014) 899–904.\nN.A. El-Ragehy, N.Y. Hassan, M. Abdelkawy, M.A. Tantawy, J. Chromatogr. Sci. 52 (2014) 559–565.\nB. Simonovska, I. Vovk, J. Chromatogr. A 903 (2000) 219–225.\nW. Jin, Y. Zhang, S. Mei, Y. Xiong, Q. Yang, L. Yu, J. Sci. Food Agric. 87 (2007) 2251–2258.\nK. Dhalwal, V.M. Shinde, A.G. Namdeo, K.R. Mahadik, S.S. Kadam, J. Chromatogr. Sci. 45 (2007) 706–709.\nE. Bodoki, R. Oprean, L. Vlase, M. Tamas, R Sandulescu, J. Pharm. Biomed. Anal. 37 (2005) 971–977.\nE.A. Abourashed, M.S. Abdel-Kader, A.-A.M. Habib, J. Planar Chromatogr. 18 (2005) 372–376.\nR. Kakde, D. Satone, N. Bawane, J. Planar Chromatogr. 22 (2009) 417–420.\nP. Pushpalatha, R.K. Sarin, M. Idris, M.A. Rao, T.R.R. Baggi, M.S. Varma, J. Planar Chromatogr. 26 (2013) 354–357.\nR. Skibiński, Ł. Komsta, J. Planar Chromatogr. 23 (2010) 23–27.\nK.R. Gupta, M.R. Tajne, S.r G. Wadodkar, J. Planar Chromatogr. 23 (2010) 134–136.\nS.S. Deshmukh, V.V. Musale, V.K. Bhusari, S.R. Dhaneshwar, J. Planar Chromatogr. 24 (2011) 218–221.\nA. Singh, N.I. Alvi, J. Planar Chromatogr. 24 (2011) 253–256.\nS.G. Musharraf, M. Shoaib, N. ul-Haq, J. Planar Chromatogr. 24 (2011) 381–387.\nD.H. Shewiyo, E. Kaale, P.G. Risha, H.i B. Sillo, B. Dejaegher, J. Smeyers-Verbeke, Y.V. Heyden, J. Planar Chromatogr. 24 (2011) 529–533.\nP. Pushpalatha, R.K. Sarin, M. Idris, M.A. Rao, T.R.R. Baggi, M.S. Varma, J. Planar Chromatogr. 26 (2013) 354–357.\nA.A. Shirkhedkar, P.M. Bugdane, S.J. Surana, J. Chromatogr. Sci. 48 (2010) 109–113.\nV. Bunel, M. Hamel, P. Duez, C. Stevigny, Phytochem. Lett. 10 (2014) 101–106.\nL.J. McGawa, V. Steenkamp, J.N. Eloff, J. Ethnopharmacol. 110 (2007) 16–22.\nM. Khan, B. Giessrigl, C. Vonach, S. Madlener, S. Prinz, I. Herbaceck, C. Hölzl, S. Bauer, K. Viola, W. Mikulits, R.A. Quereshi, S. Knasmüller, M. Grusch, B. Kopp, G. Krupitza, Mutation Res. 683 (2010) 123–130.\nF. Pan, K. Hou, F. Gao, B. Hu, Q. Chen, W. Wu, Phytomedicine 21 (2014) 1104–1109.\nV. Mirakor, V. Vaidya, S. Menon, P. Champanerker, A. Laud, J. Planar Chromatogr. 21 (2008) 187–189.\nS. Mennickent, J. Contreras, C. Reyes, M. Vega, M. de Diego, J. Planar Chromatogr. 23 (2010) 75–78.\nK. Wróblewski, A. Petruczynik, M. Waksmundzka-Hajnos, Acta Chromatogr. 26 (2014) 297–307.\nT. Rajesh, K.S. Lakshmi, S. Sharma, P.D. Reddy, S. Lakshmi, J. Planar Chromatogr. 23 (2010) 148–155.\nA. Petruczynik, M. Waksmundzka-Hajnos, M.L. Hajnos, J. Chromatogr. Sci. 43 (2005) 183–194.\nT. Tuzimski, J. Planar Chromatogr. 24 (2011) 281–289.\nT.W. Inglot, A. Gumieniczek, Ł. Komsta, R. Związek, Acta Chromatogr. 25 (2009) 47–58.\nA. Petruczynik, M. Brończyk, T. Tuzimski, M. Waksmundzka-Hajnos, J. Liq. Chromatogr. 31 (2008) 1913–1924.\nA. Petruczynik, J. Planar Chromatogr. 23 (2010) 56–64.\nI. Ali, V.K. Gupta, P.t Singh, H.V. Pant, J. Planar Chromatogr. 18 (2005) 388–390.\nT. Gondová, I.A. Amar, J. Planar Chromatogr. 24 (2011) 40–43.\nI. Ali, V.K. Gupta, P. Singh, U. Negi, J. Planar Chromatogr. 25 (2012) 156–161.\nP.S. Jain, A.J. Chaudhari, S.J. Surana, Acta Chromatogr. 26 (2009) 309–319.\nM.P. Marszałł, T. Bączek, R. Kaliszan, Anal. Chim. Acta 547 (2005) 172–178.\nM.P. Marszałł, W.D. Sroka, A. Balinowska, D. Mieszkowski, M. Koba, R. Kaliszan, J. Chromatogr. Sci. 51 (2013) 560–565.\nJ. Pothier, N. Galand, J. Chromatogr. A 1080 (2005) 186–191.\nY. Scholl, N. Asano, B. Drager, J. Chromatogr. A 928 (2001) 217–224.\nP. Migas, M. Heyka, L. Pobłocka-Olech, M. Krauze-Baranowska, J. Planar Chromatogr. 25 (2012) 439–444.\nA. Petruczynik, M. Waksmundzka-Hajnos, T. Michniowski, T. Plech, T. Tuzimski, M.L. Hajnos, M. Gadzikowska, G. Józwiak, J. Chromatogr. Sci. 45 (2007) 447–454.\nA. Petruczynik, M. Waksmundzka-Hajnos, M.Ł. Hajnos, J. Planar Chromatogr. 18 (2005) 78–84.\nA. Petruczynik, M. Waksmundzka-Hajnos, T. Plech, T. Tuzimski, M.Ł. Hajnos, G. Józwiak, M. Gadzikowska, A. Rompała, J. Chromatogr. Sci. 46 (2008) 291–297.\nM. Gadzikowska, A. Petruczynik, M. Waksmundzka-Hajnos, M. Hawrył, G. Jóźwiak, J. Planar Chromatogr. 18 (2005) 127–131.\nT. Tuzimski, J. Planar Chromatogr. 20 (2007) 13–18.\nT. Tuzimski, J. Liq. Chromatogr. 35 (2012) 1415–1428.\nT. Tuzimski, J. Planar Chromatogr. 23 (2010) 184–189.\nT. Tuzimski, J. Planar Chromatogr. 21 (2008) 49–54.\nT. Tuzimski, J. Chromatogr. A 1218 (2011) 8799–8812.\nF. Pozzi, N. Shibayama, M. Leona, J.R. Lombardi, J. Raman Spectrosc. 44 (2013) 102–107.\nM. Shariatgorji, Z. Spacil, G. Maddalo, L.B. Cardenas, L.L. Ilag, Rapid Commun. Mass Spectrom. 23 (2009) 3655–3660.\nL. Ciesla, M. Wakmsundzka-Hajnos, K. Wojtunik, M. Hajnos, Phytochem. Lett. 11 (2015) 445–454.\nM. Waksmundzka-Hajnos, J. Chromatogr. B 717 (1998) 98–118.\nM. Hawrył, M. Waksmundzka-Hajnos, L. Ciesla, in C.F. Poole (ed.), Instrumental Thin-Layer Chromatography, Elsevier, Amsterdam, 2014.\nL. Ciesla, M. Hajnos, M. Waksmundzka-Hajnos, J. Planar Chromatogr. 24 (2011) 295–300.\nA.J. Alpert, J. Chromatogr. A 499 (1990) 177–196.\nL. Ciesla, J. Kryszen, A. Stochmal, W. Oleszek, M. Waksmundzka-Hajnos, J. Pharm. Biomed. Anal. 70 (2012) 126–135.\nL. Ciesla, M. Waksmundzka-Hajnos, J. Chromatogr. A 1216 (2009) 1035–1052.\nH.D. Smolarz, M. Waksmundzka-Hajnos, J. Planar Chromatogr. 6 (1993) 278–281.\nD. Milojković-Opsenica, H. Majstorović, A. Radočic, Ž. Tešić, J. Planar Chromatogr. 28 (2015) 106–114.\nM. Olech, L. Komsta, R. Nowak, L. Ciesla, M. Waksmundzka-Hajnos, Food Chem. 132 (2012) 549–553.\nM. Starek, L. Komsta, J. Krzek, J. Pharm. Biomed. Anal. 85 (2013) 132–137.\nF. Andrić, K. Heberger, J. Pharm. Biomed. Anal. 115 (2015) 183–191.\nM. Roses, I. Canals, H. Allemann, K. Siigur, E. Bosch, Anal. Chem. 68 (1996) 4094–4100.",{"VOID":919},"10.1556\u002F1006.2015.28.6.1","2024-06-24T23:50:42.812+00:00","https:\u002F\u002Fakjournals.com\u002Fdoi\u002F10.1556\u002F1006.2015.28.6.1",[923,938],{"id":924,"sortIndex":21,"researcher":20,"roles":925,"affiliations":926,"properties":935,"displayName":937,"givenName":20,"familyName":20},"72c4c090-9fa6-4e59-8868-9bee239e84ce",[202],[927],{"id":928,"sortIndex":21,"affiliation":929,"properties":20},"b37ec0d9-5f15-4150-b831-2a64566e1529",{"id":928,"createTime":20,"updateTime":20,"relativeEntities":930,"slug":20,"properties":931,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":934,"statistic":20},[],{"title":932},{"VI":933},"Department of Inorganic Chemistry, Medical University of Lublin, Lublin, Poland",[],{"title":936},{"VI":937},"Anna Petruczynik",{"id":939,"sortIndex":150,"researcher":20,"roles":940,"affiliations":941,"properties":956,"displayName":958,"givenName":20,"familyName":20},"c9187a0e-c82c-455c-a8a7-623b9fb932e7",[202],[942,948],{"id":928,"sortIndex":21,"affiliation":943,"properties":20},{"id":928,"createTime":20,"updateTime":20,"relativeEntities":944,"slug":20,"properties":945,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":947,"statistic":20},[],{"title":946},{"VI":933},[],{"id":949,"sortIndex":150,"affiliation":950,"properties":20},"ccf44ed3-9f0c-4b9b-8bcc-2779220d2157",{"id":949,"createTime":20,"updateTime":20,"relativeEntities":951,"slug":20,"properties":952,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":955,"statistic":20},[],{"title":953},{"VI":954},"Laboratory of Clinical Investigation, National Institute on Aging, National Institutes of Health, Baltimore, USA",[],{"title":957,"gsAuthor":959},{"VI":958},"Łukasz M. Cieśla",{"VOID":960},"[\"ugqwSScAAAAJ\"]",{"url":921,"publisher":962,"properties":1012},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":963,"slug":10,"properties":964,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":968,"manageAffiliations":981,"indexDatabases":992,"url":20,"thumbnailPath":20,"statistic":1007,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":965,"title":966,"eissn":967},{"VOID":13},{"EN":15},{"VOID":17},[969,973,977],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":970,"label":971,"description":972,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":974,"label":975,"description":976,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":978,"label":979,"description":980,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[982,987],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":983,"slug":20,"properties":984,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":986,"statistic":20},[],{"title":985},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":988,"slug":20,"properties":989,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":991,"statistic":20},[],{"title":990},{"EN":54},[56],[993,1000],{"id":59,"indexDatabase":994,"url":70,"indexYears":71,"academicFieldIds":999,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":995,"label":996,"description":997,"key":67,"publicationTags":998,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":1001,"url":91,"indexYears":20,"academicFieldIds":1006,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":1002,"label":1003,"description":1004,"key":87,"publicationTags":1005,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":1008,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":1009,"totalCitation":129,"totalCitationByYear":1010,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":1011,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":1013,"volume":1015},{"VOID":1014},"413-425",{"VOID":1016},"28",6,{"total":1017,"publishYear":1019,"statisticByYear":1020},2015,{"2016":150,"2017":150,"2018":150,"2019":150,"2020":150,"2021":150},"2015-12-01","DONE_ANALYZE_CITATION","2026-07-25T14:57:21.565+00:00",[76,89],{"id":1026,"createTime":1027,"updateTime":1028,"relativeEntities":1029,"slug":1030,"properties":1031,"entityType":191,"verifyStatus":192,"verifyTime":1042,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1043,"fullTextUrl":20,"authors":1044,"publicationType":287,"publisherRelationship":1088,"citationCount":20,"citationInfo":20,"publishDate":1144,"publishYear":1145,"citationAnalyzeStatus":1146,"lastCitationAnalyze":1147,"indexDatabases":1148,"openAccess":20,"references":20,"isForceReanalyzing":347},"abd561c5-782c-41e3-8163-e54c54e95601","2024-02-10T22:38:47.035+00:00","2026-07-22T13:08:57.791+00:00",[],"An-HPTLC-Densitometry-Method-for-the-Quantification-of-Pharmacologically-Active-Alkaloids-in-Sceletium-tortuosum-Raw-Material-and-Products",{"abstract":1032,"title":1034,"gsPaper":1036,"references":1038,"doi":1040},{"EN":1033},"Mesembrine-type alkaloids are reported to be responsible for the psychoactive properties of Sceletium tortuosum. The aim of the study was to develop a simple, rapid, and precise high-performance thin-layer chromatography densitometric method for the simultaneous determination of mesembrenol, mesembranol, mesembrine, and mesebrenone in S. tortuosum raw materials and commercial products. Silica gel 60 F254 pre-coated glass plates were used with a mobile phase of dichloromethane-MeOH-10% NH3 (90:10:0.1, v\u002Fv). Densitometric quantification was performed in absorbance mode at 280 nm, and good separation was obtained using a single mobile phase. Regression analyses of the calibration data showed good linear relationships with regression coefficient (r2) values ranging from 0.994 to 0.999. The method was validated for linearity, accuracy, limit of detection, limit of quantification, and precision (repeatability). The results showed good correlation with data obtained from gas chromatography\u002Fmass spectrometry analysis (reference method). The method proved to be specific, with potential application for rapid quantitative analyses of pharmacologically active alkaloids in S. tortuosum raw materials and commercial products.",{"EN":1035},"An HPTLC-Densitometry Method for the Quantification of Pharmacologically Active Alkaloids in Sceletium tortuosum Raw Material and Products",{"VOID":1037},"[]",{"VOID":1039},"W.P. Armstrong, Mind-Altering Plant Alkaloids. Volume 7 (Number 3). Available on: http:\u002F\u002Fwaynesword.palomar.edu\u002Fww0703.htm. Accessed on 01 Oct 2011. 1998.\nM.T. Smith, N.R. Crouch, N. Gericke, M. Hirst, J. Ethnopharmacol. 50 (1996) 119–130.\nB-E. van Wyk, N. Gericke, People’s Plants, Briza Publications, Pretoria, 2003.\nN. Gericke, B-E. van Wyk, Pharmaceutical Compositions Containing Mesembrine and Related Compounds, PCT\u002FGB97\u002F01493, 1997.\nSceletium S.a.. Sceletium — Kougoed — A natural mood elevator. Available on: http:\u002F\u002Fwww.Sceletium.org. Accessed on 08 Aug 2010.\nN. Gericke, A.M. Viljoen, J. Ethnopharmacol. 119 (2008) 653–663.\nJ.M. O’Donnell, H.T. Zhang, Trends Pharmacol. Sci. 25 (2004) 158–163.\nS. Patnala, I. Kanfer, J. Pharm. Sci. 13 (2010) 558–570.\nS. Patnala, I. Kanfer, J. Ethnopharmacol. 121 (2009) 86–91.\nE.A. Shikanga, A. Viljoen, S. Combrinck, A. Marston, Phytochem. Lett. 4 (2011) 190–193.\nF.Q. Alali, Y.R. Tahboub, E.S. Ibrahim, M. Qandil, K. Tawaha, J.P. Burgess, A. Sy, Y. Nakanishi, D.J. Kroll, N.H. Oberlies, Phytochemistry 69 (2008) 2341–2346.\nH. Wagner, S. Bladt, Plant Drug Analysis: A Thin Layer Chromatography Atlas, 1st edn., Springer-Verlag, Heidelberg, 2001.\nICH Harmonised Tripartite Guideline: Validation of analytical Procedures: Text and Methodology Q2(R1), International Conference of Harmonisation, Geneva, 2005.\nJ.N. Miller, J.C. Miller, Statistics and Chemometrics for Analytical Chemistry, 4th edn., Prentice Hall, New York, 2000.",{"VOID":1041},"10.1556\u002FJPC.25.2012.4.1","2024-06-02T08:33:50.722+00:00","https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F25\u002F4\u002Farticle-p283.xml",[1045,1060,1075],{"id":1046,"sortIndex":21,"researcher":20,"roles":1047,"affiliations":1048,"properties":1057,"displayName":1059,"givenName":20,"familyName":20},"bf982571-3ff1-46b2-a739-df2feda1c6d7",[202],[1049],{"id":1050,"sortIndex":21,"affiliation":1051,"properties":20},"c3012def-ef77-491a-a0b5-6f5b872c72c8",{"id":1050,"createTime":20,"updateTime":20,"relativeEntities":1052,"slug":20,"properties":1053,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1056,"statistic":20},[],{"title":1054},{"VI":1055},"Department of Chemistry, Tshwane University of Technology, Pretoria, South Africa",[],{"title":1058},{"VI":1059},"Emmanuel A. Shikanga",{"id":1061,"sortIndex":150,"researcher":20,"roles":1062,"affiliations":1063,"properties":1072,"displayName":1074,"givenName":20,"familyName":20},"329a8f1e-6c0c-4512-acab-d2914a4a2d9a",[202],[1064],{"id":1065,"sortIndex":21,"affiliation":1066,"properties":20},"b5d0f47a-22d2-4ed7-b7dc-87db9ad1d34b",{"id":1065,"createTime":20,"updateTime":20,"relativeEntities":1067,"slug":20,"properties":1068,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1071,"statistic":20},[],{"title":1069},{"VI":1070},"Department of Pharmaceutical Sciences, Tshwane University of Technology, Pretoria, South Africa",[],{"title":1073},{"VI":1074},"Ilze Vermaak",{"id":1076,"sortIndex":109,"researcher":20,"roles":1077,"affiliations":1078,"properties":1085,"displayName":1087,"givenName":20,"familyName":20},"51dcce42-a105-47c9-b014-99e149564f20",[202],[1079],{"id":1065,"sortIndex":21,"affiliation":1080,"properties":20},{"id":1065,"createTime":20,"updateTime":20,"relativeEntities":1081,"slug":20,"properties":1082,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1084,"statistic":20},[],{"title":1083},{"VI":1070},[],{"title":1086},{"VI":1087},"Alvaro M. Viljoen",{"url":1043,"publisher":1089,"properties":1139},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1090,"slug":10,"properties":1091,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":1095,"manageAffiliations":1108,"indexDatabases":1119,"url":20,"thumbnailPath":20,"statistic":1134,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":1092,"title":1093,"eissn":1094},{"VOID":13},{"EN":15},{"VOID":17},[1096,1100,1104],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":1097,"label":1098,"description":1099,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":1101,"label":1102,"description":1103,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":1105,"label":1106,"description":1107,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[1109,1114],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":1110,"slug":20,"properties":1111,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1113,"statistic":20},[],{"title":1112},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":1115,"slug":20,"properties":1116,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1118,"statistic":20},[],{"title":1117},{"EN":54},[56],[1120,1127],{"id":59,"indexDatabase":1121,"url":70,"indexYears":71,"academicFieldIds":1126,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":1122,"label":1123,"description":1124,"key":67,"publicationTags":1125,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":1128,"url":91,"indexYears":20,"academicFieldIds":1133,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":1129,"label":1130,"description":1131,"key":87,"publicationTags":1132,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":1135,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":1136,"totalCitation":129,"totalCitationByYear":1137,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":1138,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":1140,"volume":1142},{"VOID":1141},"283-289",{"VOID":1143},"25","2012-08-01",2012,"ERROR_IN_GET_PLATFORM_ID","2026-07-22T13:08:57.790+00:00",[76,89],{"id":1150,"createTime":1151,"updateTime":1152,"relativeEntities":1153,"slug":1154,"properties":1155,"entityType":191,"verifyStatus":192,"verifyTime":1165,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1166,"fullTextUrl":20,"authors":1167,"publicationType":287,"publisherRelationship":1198,"citationCount":20,"citationInfo":20,"publishDate":1254,"publishYear":1255,"citationAnalyzeStatus":1146,"lastCitationAnalyze":1256,"indexDatabases":1257,"openAccess":20,"references":20,"isForceReanalyzing":347},"969a7c3b-fc06-4c5a-815d-ee377e0d151b","2024-01-05T20:57:02.343+00:00","2026-07-22T02:05:05.487+00:00",[],"TLC-Separation-of-Metal-Ions-Using-Di-n-butyl-dithiophosphoric-Acid-and-Neutral-Organophosphorus-Ligands",{"abstract":1156,"title":1158,"gsPaper":1160,"references":1161,"doi":1163},{"EN":1157},"Thin-layer chromatographic separation of U(VI), Th(IV), the lanthanides Ln(III), (La(III), Ce(III), Pr(III), Sm(III), Gd(III), Er(III)), Co(II), Ni(II), and Cu(II) on silica gel has been studied using mobile phases containing tributylphosphate (TBP), trioctylphosphine oxide (TOPO), and di(n-butyl)dithiophosphoric acid (HDBDTP). The results obtained showed that the retention factors of U(VI), Th(IV), and Ln(III) are more enhanced when a mixture of HDBDTP and TOPO is used, and a synergic effect is suggested. Improvement of the resolution was also achieved, especially for separation of Ln(III) from each other.",{"EN":1159},"TLC Separation of Metal Ions Using Di(n-butyl)dithiophosphoric Acid and Neutral Organophosphorus Ligands",{"VOID":1037},{"VOID":1162},"J.R. Wasson, G.M. Watermann, and H.J. Stoklosa, Fortschr. Chem. Forsch. (Current Topics Chem.) 35 (1973) 65.\nI. Haiduc and M. Curtui, Syn. React. Inorg. Metalorg. Chem. 6 (1976) 125–131.\nI. Haiduc, J. Organomet. Chem. 623 (2001) 29–42.\nI.P. Alimarin, T.V. Radionova, and V.M. Ivanov, Russian Chem. Rev. 58 (1989) 863–877.\nG. Cote and D. Bauer, Rev. Inorg. Chem. 10 (1989) 121–144.\nR. Fitousi and C. Musikas, Sep. Sci. Technol. 15 (1980) 845–853.\nI. Haiduc and M. Curtui, J. Radioanal. Nucl. Chem. 99 (1986) 257–263.\nI. Haiduc, M. Curtui, I. Haiduc, and I. Silaghi-Dumitrescu, Chemical Aspects of Nuclear Methods and Analysis, Proc. Final Research Coordination Meeting organized by the International Atomic Energy Agency, Hamanatsu, Japan, October 2-5, 1984, IAEA-TECDOC-350, Vienna (1985) 101–172.\nM. Curtui, J. Radioanal. Nucl. Chem. Lett. 186 (1994) 273–280.\nM. Curtui, I. Haiduc, and L. Ghizdavu, J. Radioanal. Nucl. Chem. 250 (2001) 359–362.\nL. Bromberg, J. Phys. Chem. 100 (1996) 1767–1770.\nA.G. Strikovsky, A. Warshawsky, L. Hankova, and K. Jerabek, Acta Polym. 49 (1998) 600–605.\nA. Warshawsky, A.G. Strikovsky, and J.L. Cortina, Solvent Extr. Ion Exch. 15 (1997) 259–283.\nS.P. Quináia, J.B.B. da Silva, M.C.E. Rollemberg, and A.J. Curtius, Talanta 54 (2001) 687–696.\nI. Haiduc and M. Curtui, Studia Univ. Babeş-Bolyai, Chemia 19 (1974) 71–75.\nG. Marcu, M. Curtui, and I. Haiduc, J. Inorg. Nucl. Chem. 39 (1977) 1415–1418.\nM. Curtui and I. Haiduc, J. Inorg. Nucl. Chem. 43 (1981) 1076–1078.\nI. Haiduc, G. Marcu, and M. Curtui, Rev. Roumaine Chim. 22 (1977) 625–632.\nM. Curtui, Rev. Roumaine Chim. 42 (1997) 621–625.\nM. Curtui, I. Haiduc, and L. Ghizdavu, J. Radioanal. Nucl. Chem. 251 (2002) 163–166.\nT. Hodisan, M. Curtui, and I. Haiduc, J. Radioanal. Nucl. Chem. 238 (1998) 129–133.\nT. Hodisan, M. Curtui, S. Cobzac, C. Cimpoiu, and I. Haiduc, J. Radioanal. Nucl. Chem. 238 (1998) 179–182.\nM.L. Soran, C. Măruţoiu, M. Curtui, and M. Dascălu, Chem. Environ. Res. 12 (2003) 135–139.\nM.L. Soran, C. Măruţoiu, M. Curtui, T. Hodişan, and R. Oprean, Acta Universitatis Cibiniensis, Seria F, Chemia 5 (2002) 69–73.\nL. Soran, T. Hodişan, M. Curtui, and D. Casoni, J. Planar Chromatogr. 18 (2005) 164–167.\nM.L. Soran, Ph.D. Thesis: The Use of Thiophosphoric Acid Derivatives as Extracting Agents in Extraction Chromatography, 2005.\nK. Sasse, Organische Phosphor-Verbindungen (Houben-Weyl). Methoden der Organischen Chemie, Band XII, Teil 2, G. Thieme, Stuttgart, 1964.\nT. Braun and G. Ghersini, Extraction Chromatography, Akadémiai Kiadó, Budapest, 1975.",{"VOID":1164},"10.1556\u002FJPC.19.2006.4.7","2024-06-25T22:16:15.971+00:00","https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F19\u002F110\u002Farticle-p297.xml",[1168,1183],{"id":1169,"sortIndex":21,"researcher":20,"roles":1170,"affiliations":1171,"properties":1180,"displayName":1182,"givenName":20,"familyName":20},"8cd9025d-afe0-451a-83b3-ff25c8955470",[202],[1172],{"id":1173,"sortIndex":21,"affiliation":1174,"properties":20},"68bd81bd-3ae4-48be-b60c-91a6d67724fc",{"id":1173,"createTime":20,"updateTime":20,"relativeEntities":1175,"slug":20,"properties":1176,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1179,"statistic":20},[],{"title":1177},{"VI":1178},"Faculty of Chemistry and Chemical Engineering, Cluj-Napoca, Romania",[],{"title":1181},{"VI":1182},"Maria Curtui",{"id":1184,"sortIndex":150,"researcher":20,"roles":1185,"affiliations":1186,"properties":1195,"displayName":1197,"givenName":20,"familyName":20},"60633628-51ad-4a40-868b-4b90bab27f80",[202],[1187],{"id":1188,"sortIndex":21,"affiliation":1189,"properties":20},"70a2a6ca-476e-4be7-97ed-4f9034472c4e",{"id":1188,"createTime":20,"updateTime":20,"relativeEntities":1190,"slug":20,"properties":1191,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1194,"statistic":20},[],{"title":1192},{"VI":1193},"National Institute of Research and Development for Isotopic and Molecular Technology, Cluj-Napoca, Romania",[],{"title":1196},{"VI":1197},"Maria-Loredana Soran",{"url":1166,"publisher":1199,"properties":1249},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1200,"slug":10,"properties":1201,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":1205,"manageAffiliations":1218,"indexDatabases":1229,"url":20,"thumbnailPath":20,"statistic":1244,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":1202,"title":1203,"eissn":1204},{"VOID":13},{"EN":15},{"VOID":17},[1206,1210,1214],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":1207,"label":1208,"description":1209,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":1211,"label":1212,"description":1213,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":1215,"label":1216,"description":1217,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[1219,1224],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":1220,"slug":20,"properties":1221,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1223,"statistic":20},[],{"title":1222},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":1225,"slug":20,"properties":1226,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1228,"statistic":20},[],{"title":1227},{"EN":54},[56],[1230,1237],{"id":59,"indexDatabase":1231,"url":70,"indexYears":71,"academicFieldIds":1236,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":1232,"label":1233,"description":1234,"key":67,"publicationTags":1235,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":1238,"url":91,"indexYears":20,"academicFieldIds":1243,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":1239,"label":1240,"description":1241,"key":87,"publicationTags":1242,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":1245,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":1246,"totalCitation":129,"totalCitationByYear":1247,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":1248,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":1250,"volume":1252},{"VOID":1251},"297-301",{"VOID":1253},"19","2006-08-01",2006,"2026-07-22T02:05:05.486+00:00",[76,89],{"id":1259,"createTime":1260,"updateTime":1261,"relativeEntities":1262,"slug":1263,"properties":1264,"entityType":191,"verifyStatus":192,"verifyTime":1275,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1276,"fullTextUrl":20,"authors":1277,"publicationType":287,"publisherRelationship":1323,"citationCount":21,"citationInfo":1379,"publishDate":1382,"publishYear":1380,"citationAnalyzeStatus":19,"lastCitationAnalyze":1383,"indexDatabases":1384,"openAccess":20,"references":20,"isForceReanalyzing":347},"063ae18f-52af-4d0e-80c2-37b1eee1cdad","2024-01-22T06:51:52.952+00:00","2026-07-21T15:23:15.645+00:00",[],"Comparative-Studies-on-the-Analytical-and-Antioxidant-Activities-of-the-Medicinally-Important-Stem-Bark-of-Holoptelea-integrifolia",{"abstract":1265,"title":1267,"gsPaper":1269,"references":1271,"doi":1273},{"EN":1266},"Holoptelea integrifolia (Sanskrit: chirivilva, Hindi: chilbil, family: Ulmaceae) is a large deciduous tree, growing up to 18 m tall, distributed throughout the greater part of India up to an altitude of 2000 ft. It has grey bark, covered with blisters, peeling in corky scales on old trees. The plant has several medicinal properties such as antiinflammatory, anthelmintic, and antidiabetic activity. The present work was taken up with a view to lay down standards which will contribute significantly to the quality control of the medicinally useful Holoptelea species. Till date, there is no comparative phytochemical and antioxidant literature available of this traditionally valuable drug. Biomarkers such as stigmasterol, olenolic acid, ursolic acid, betulin, and lupeol were estimated through high-performance thin-layer chromatography (HPTLC) method, and it was found maximum in Behraich plant sample. The bark of Behraich’s sample shows strong antioxidant activity (2,2-diphenyl-2-picrylhydrazyl [DPPH] assay). It suggests secondary metabolites present in H. integrifolia having antioxidant effects, which indicate their effectiveness in diseases caused by overproduction of free radicals. Over all, these comparative data provide a suitable criteria to differentiate the stem barks of the above four Holoptelea barks of different places from India and open a new vista for the exploitation of these species for the development of herbal formulations.",{"EN":1268},"Comparative Studies on the Analytical and Antioxidant Activities of the Medicinally Important Stem Bark of Holoptelea integrifolia",{"VOID":1270},"[\"11859141506652460497\"]",{"VOID":1272},"Anonymous, The Wealth of India, A Dictionary of Indian Raw Materials and Industrial Products, CSIR, New Delhi, 2001, pp. 109–110.\nA.K. Nadkarni, Indian Material Medica, Popular Prakashan, Mumbai, 2000, p. 651.\nV.D. Bambhole, G. G. Jiddewar, Sachitra Ayurveda 37 (1985) 557–561.\nP.K. Warrier, V. P. Nambiar, Indian Medicinal Plants – A Compendium of 500 Species, Orient Longman Pvt. Ltd., Kolkata, 2004, p. 162.\nAnonymous, Medicinal Plants of India, ICMR, New Delhi, 1987, pp. 48–50.\nI.R. Khan, A. Khunam, Ethnomedicine and Human Welfare, Ukaaz Publication, Hyderabad, 2004–05, pp. 18–154.\nN. Durga, P.M. Paarakh, Int. J. Res. Ayurveda Pharm. 1 (2010) 637–641.\nK. Peach, M.V. Tracy, Modern Methods of Plant Analysis, Vols. 3 and 4, Springer, Heidelberg, 1995.\nGeneral Guidelines for Methodologies on Research and Evaluation of Traditional Medicine, World Health Organization, Geneva, 2002, pp. 342–433.\nS.H. Schanderl, Method in Food Analysis, Academic Press, New York, 1970, p. 709.\nH.G. Bray, W.V. Thorpe, Analysis of phenolic compounds of interest in metabolism, Methods of Biochemical Analysis, Vol. 1, Interscience Publication, Inc., New York, 1954, pp. 1–27.",{"VOID":1274},"10.1556\u002FJPC.27.2014.3.3","2024-05-12T15:41:38.660+00:00","https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F27\u002F3\u002Farticle-p162.xml",[1278,1293,1306],{"id":1279,"sortIndex":21,"researcher":20,"roles":1280,"affiliations":1281,"properties":1290,"displayName":1292,"givenName":20,"familyName":20},"d244e421-0795-491c-aa5d-a48479fe5754",[202],[1282],{"id":1283,"sortIndex":21,"affiliation":1284,"properties":20},"f84a7e6b-5aad-40ca-9abf-bf109629ea52",{"id":1283,"createTime":20,"updateTime":20,"relativeEntities":1285,"slug":20,"properties":1286,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1289,"statistic":20},[],{"title":1287},{"VI":1288},"Phytochemistry Division, CSIR — National Botanical Research Institute, Lucknow, India",[],{"title":1291},{"VI":1292},"Prateek Dixit",{"id":1294,"sortIndex":150,"researcher":20,"roles":1295,"affiliations":1296,"properties":1303,"displayName":1305,"givenName":20,"familyName":20},"e17c461c-b45b-4be1-8b7b-2930588212f7",[202],[1297],{"id":1283,"sortIndex":21,"affiliation":1298,"properties":20},{"id":1283,"createTime":20,"updateTime":20,"relativeEntities":1299,"slug":20,"properties":1300,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1302,"statistic":20},[],{"title":1301},{"VI":1288},[],{"title":1304},{"VI":1305},"Mahesh Pal",{"id":1307,"sortIndex":109,"researcher":20,"roles":1308,"affiliations":1309,"properties":1318,"displayName":1320,"givenName":20,"familyName":20},"5c958555-3ded-4da8-aac3-75bdc87e085d",[202],[1310],{"id":1311,"sortIndex":21,"affiliation":1312,"properties":20},"bc2b5425-5294-4b5d-8ecc-c5d3610a24b3",{"id":1311,"createTime":20,"updateTime":20,"relativeEntities":1313,"slug":20,"properties":1314,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1317,"statistic":20},[],{"title":1315},{"VI":1316},"Plant Diversity, Systematics and Herbarium Division, CSIR — National Botanical Research Institute, Lucknow, India",[],{"title":1319,"gsAuthor":1321},{"VI":1320},"Dalip K. Upreti",{"VOID":1322},"[\"6zoxc9EAAAAJ\"]",{"url":1276,"publisher":1324,"properties":1374},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1325,"slug":10,"properties":1326,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":1330,"manageAffiliations":1343,"indexDatabases":1354,"url":20,"thumbnailPath":20,"statistic":1369,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":1327,"title":1328,"eissn":1329},{"VOID":13},{"EN":15},{"VOID":17},[1331,1335,1339],{"id":24,"createTime":20,"updateTime":20,"relativeEntities":1332,"label":1333,"description":1334,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":27},{},{"id":30,"createTime":20,"updateTime":20,"relativeEntities":1336,"label":1337,"description":1338,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":33},{},{"id":36,"createTime":20,"updateTime":20,"relativeEntities":1340,"label":1341,"description":1342,"parentId":20,"standard":20,"scholarHubFieldId":20},[],{"EN":39},{},[1344,1349],{"id":43,"createTime":20,"updateTime":20,"relativeEntities":1345,"slug":20,"properties":1346,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1348,"statistic":20},[],{"title":1347},{"EN":47},[],{"id":50,"createTime":20,"updateTime":20,"relativeEntities":1350,"slug":20,"properties":1351,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1353,"statistic":20},[],{"title":1352},{"EN":54},[56],[1355,1362],{"id":59,"indexDatabase":1356,"url":70,"indexYears":71,"academicFieldIds":1361,"indexDatabaseRanking":76},{"id":61,"createTime":20,"updateTime":20,"relativeEntities":1357,"label":1358,"description":1359,"key":67,"publicationTags":1360,"standard":20},[],{"EN":64,"VI":64},{"EN":64,"VI":66},[69],[73,74,75],{"id":78,"indexDatabase":1363,"url":91,"indexYears":20,"academicFieldIds":1368,"indexDatabaseRanking":20},{"id":80,"createTime":20,"updateTime":20,"relativeEntities":1364,"label":1365,"description":1366,"key":87,"publicationTags":1367,"standard":20},[],{"EN":83,"VI":83},{"EN":85,"VI":86},[89,90],[93],{"impactFactor":21,"impactFactorByYear":1370,"i10Index":108,"i10IndexLast5Year":109,"totalPublication":110,"totalPublicationByYear":1371,"totalCitation":129,"totalCitationByYear":1372,"totalCitationPerPublication":151,"totalCitationPerPublicationByYear":1373,"hindexLast5Year":170,"hindex":170},{"2003":96,"2004":96,"2012":97,"2013":98,"2014":99,"2015":100,"2016":101,"2017":102,"2018":99,"2019":103,"2020":104,"2021":105,"2022":106,"2023":107},{"2001":112,"2002":113,"2003":114,"2004":115,"2005":115,"2006":114,"2007":114,"2008":116,"2009":117,"2010":113,"2011":118,"2012":119,"2013":120,"2014":108,"2015":121,"2016":122,"2017":108,"2018":123,"2019":124,"2020":125,"2021":126,"2022":108,"2023":127,"2024":128},{"2002":131,"2003":132,"2004":133,"2005":134,"2006":135,"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":127,"2014":142,"2015":143,"2016":144,"2017":145,"2018":146,"2019":147,"2020":125,"2021":148,"2022":149,"2023":150},{"2002":153,"2003":154,"2004":155,"2005":156,"2006":157,"2007":158,"2008":159,"2009":160,"2010":161,"2011":162,"2012":163,"2013":164,"2014":165,"2015":166,"2016":167,"2017":168,"2018":164,"2019":168,"2020":150,"2021":106,"2022":169,"2023":101},{"pages":1375,"volume":1377},{"VOID":1376},"162-165",{"VOID":1378},"27",{"total":21,"publishYear":1380,"statisticByYear":1381},2014,{},"2014-12-30","2026-07-21T15:23:15.644+00:00",[76,89],{"id":1386,"createTime":1387,"updateTime":1388,"relativeEntities":1389,"slug":1390,"properties":1391,"entityType":191,"verifyStatus":192,"verifyTime":1401,"verifyNote":194,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1402,"fullTextUrl":20,"authors":1403,"publicationType":287,"publisherRelationship":1445,"citationCount":20,"citationInfo":20,"publishDate":1501,"publishYear":1502,"citationAnalyzeStatus":1146,"lastCitationAnalyze":1503,"indexDatabases":1504,"openAccess":20,"references":20,"isForceReanalyzing":347},"db52aacb-84a1-4be0-8163-05585f1f054e","2024-02-08T06:41:28.125+00:00","2026-07-21T09:50:07.981+00:00",[],"Application-of-Image-Analysis-Technique-for-the-Determination-of-Organophosphorus-Pesticides-by-Thin-Layer-Chromatography",{"abstract":1392,"title":1394,"gsPaper":1396,"references":1397,"doi":1399},{"EN":1393},"A simple and convenient thin-layer chromatography (TLC) method combined with image analysis technique was developed to determine malathion and fenthion in apple and orange juices. The detection of pesticides was based on iodine—azide reaction. Digital images of TLC plate chromatograms were analyzed using TLSee® software, and quantitative analysis was conducted. The linearity, sensitivity, accuracy, and precision of the system were investigated.",{"EN":1395},"Application of Image Analysis Technique for the Determination of Organophosphorus Pesticides by Thin-Layer Chromatography",{"VOID":1037},{"VOID":1398},"J.E. Chambers, R.L. Carr, J.S. Boone, H.W. Chambers, in: R. Krieger (ed.), Handbook of Pesticide Toxicology, 2nd edn., Academic Press, London, 2001.\nA. Campbell, M.J. Chejlava, J. Sherma, J. Planar Chromatogr. 16 (2003) 244–246.\nW. Ciesielski, K. Dyńska-Kukulska, R. Zakrzewski, A. Hekner, J. Planar Chromatogr. 23 (2010) 343–347.\nI.A. Sima (Tuhuţiu), D. Casoni, C. Sârbu, Talanta 114 (2013) 117–123.\nM. Olech, Ł. Komsta, R. Nowak, Ł. Cieśla, M. Waksmundzka-Hajnos, Food Chem. 132 (2012) 549–553.\nP. Phattanawasin, U. Sotanaphun, T. Suk wattanasinit, J. Akkarawaranthorn, S. Kitchaiya, Forensic Sci. Int. 219 (2012) 96–100.\nJ. Sherma, Acta Chromatogr. 15 (2005) 5–30.\nH.N. Katkar, V.P. Barve, Curr. Sci. 45 (1976) 662–664.\nW.W. Leshchev, G.A. Talanov, K him. Sel’sk. Khoz. 15 (1977) 46–48.\nJ. Zazdrozińska, Rocz. Państw. Zakł. Hig. 24 (1973) 297–308.\nJ. Zazdrozińska, Rocz. Państ w. Zak ł. Hig. 21 (1970) 345–353.\nI. Pejkovic-Tadic, M.B. Celap, T.J. Janjic, S.L.J. Vitorovic, Analyst 91 (1966) 595–597.\nV. Lakshminarayana, P. Krishna Meon, Pestic. Sci. 2 (1971) 103–104.\nA.B. Wood, L. Kanagasabapathy, Pestic. Sci. 14 (1983) 108–118.\nV.V. Kadnikov, Khim. Sel’sk. Khoz. 9 (1971) 278–280.\nK. Futagami, C. Narazaki, Y. Kataoka, H. Shuto, R. Oishi, J. Chromatogr. B 704 (1997) 369–373.\nM. Hamada, R. Wintersteiger, J. Planar Chromatogr. 16 (2003) 4–10.\nT. Tuzimski, J. Planar Chromatogr. 18 (2005) 419–422.\nR. Zakrzewski, W. Ciesielski, J. Liq. Chromatogr. Relat. Technol. 31 (2008) 2657–2672.\nR. Zakrzewski, W. Ciesielski, Trend. Chromatogr. 3 (2007) 1–10.\nW. Ciesielski, Z.H. Kudzin, P. Kiełbasiński, Talanta 41 (1994) 1493–1498.",{"VOID":1400},"10.1556\u002F1006.2016.29.3.9","2024-06-26T19:40:54.031+00:00","https:\u002F\u002Fakjournals.com:443\u002Fview\u002Fjournals\u002F1006\u002F29\u002F3\u002Farticle-p221.xml",[1404,1419,1432],{"id":1405,"sortIndex":21,"researcher":20,"roles":1406,"affiliations":1407,"properties":1416,"displayName":1418,"givenName":20,"familyName":20},"e554cdd9-6678-4c0b-8755-ea4c8e94a2e8",[202],[1408],{"id":1409,"sortIndex":21,"affiliation":1410,"properties":20},"5b8156e8-7335-48cf-92d8-ef9b26870775",{"id":1409,"createTime":20,"updateTime":20,"relativeEntities":1411,"slug":20,"properties":1412,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":1415,"statistic":20},[],{"title":1413},{"VI":1414},"Department of Inorganic and Analytical Chemistry, University of Łódź, Faculty of Chemistry, Łódź, Poland",[],{"title":1417},{"VI":1418},"Monika 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