Accurate and sensitive determination of hydroxychloroquine sulfate used on COVID-19 patients in human urine, serum and saliva samples by GC-MS

Journal of Pharmaceutical Analysis - Tập 11 - Trang 278-283 - 2021
Süleyman Bodur1, Sezin Erarpat1, Ömer Tahir Günkara1, Sezgin Bakırdere1,2
1Yıldız Technical University, Faculty of Art and Science, Department of Chemistry, 34210, Davutpasa, Esenler, Istanbul, Turkey
2Turkish Academy of Sciences (TÜBA), Piyade Sokak No: 27, Çankaya 06690, Ankara, Turkey

Tài liệu tham khảo

Costanzo, 2020, SARS-CoV-2: recent reports on antiviral therapies based on lopinavir/ritonavir, darunavir/umifenovir, hydroxychloroquine, remdesivir, favipiravir and other drugs for the treatment of the new coronavirus, Curr. Med. Chem., 27, 4536, 10.2174/0929867327666200416131117 Tarek, 2020, Pharmacokinetic basis of the hydroxychloroquine response in COVID-19: implications for therapy and prevention, Eur. J. Drug Metab. Pharmacokinet., 45, 715, 10.1007/s13318-020-00640-6 Della Porta, 2020, Acute chloroquine and hydroxychloroquine toxicity: a review for emergency clinicians, Am. J. Emerg. Med., 38, 2209, 10.1016/j.ajem.2020.07.030 Bajpai, 2020, Hydroxychloroquine and COVID-19 – a narrative review, Indian J. Tubercul., 67, S147, 10.1016/j.ijtb.2020.06.004 Wright, 2020, Are hydroxychloroquine and chloroquine effective in the treatment of SARS-COV-2 (COVID-19)?, Evid. Base Dent., 21, 64, 10.1038/s41432-020-0098-2 Yao, 2020, In vitro antiviral activity and projection of optimized dosing design of hydroxychloroquine for the treatment of Severe Acute respiratory Syndrome coronavirus 2 (SARS-CoV-2), Clin. Infect. Dis., 71, 732, 10.1093/cid/ciaa237 Aronson, 2016, Chloroquine and hydroxychloroquine, 253 Parvinizadeh, 2019, Fabrication of a magnetic metal-organic framework molecularly imprinted polymer for extraction of anti-malaria agent hydroxychloroquine, New J. Chem., 43, 8508, 10.1039/C9NJ01385G Qu, 2015, Development and validation of a clinical HPLC method for the quantification of hydroxychloroquine and its metabolites in whole blood, Future Sci. OA., 1, FSO26, 10.4155/fso.15.24 Wang, 2012, Method development and validation for rapid quantification of hydroxychloroquine in human blood using liquid chromatography–tandem mass spectrometry, J. Pharmaceut. Biomed. Anal., 61, 86, 10.1016/j.jpba.2011.11.034 Carlsson, 2020, Measurement of hydroxychloroquine in blood from SLE patients using LC-HRMS-evaluation of whole blood, plasma, and serum as sample matrices, Arthritis Res. Ther., 22, 125, 10.1186/s13075-020-02211-1 Khalil, 2015, Modified carbon paste and polymeric membrane electrodes for determination of hydroxychloroquine sulfate in pharmaceutical preparations and human urine, RSC Adv., 5, 83657, 10.1039/C5RA16250E Arguelho, 2003, Electrochemical study of hydroxychloroquine and its determination in plaquenil by differential pulse voltammetry, J. Pharmaceut. Biomed. Anal., 32, 269, 10.1016/S0731-7085(02)00669-6 Deroco, 2014, Square-wave voltammetric determination of hydroxychloroquine in pharmaceutical and synthetic urine samples using a cathodically pretreated boron-doped diamond electrode, J. Electroanal. Chem., 719, 19, 10.1016/j.jelechem.2014.01.037 Ali, 2020, Drug analyses in human plasma by chromatography, 15, 10.1016/B978-0-444-64066-6.00002-2 Saitman, 2019, Overview of analytical methods in drugs of abuse analysis: gas chromatography/mass spectrometry, liquid chromatography combined with tandem mass spectrometry and related methods, 157 Poole, 2019, Gas chromatography | detectors, 135 Stauffer, 2013, Gas chromatography-mass spectrometry, 596 Farajzadeh, 2009, Dispersive liquid-liquid microextraction using extraction solvent lighter than water, J. Separ. Sci., 32, 3191, 10.1002/jssc.200900109 Hassan, 2019, Switchable-hydrophilicity solvent liquid–liquid microextraction of non-steroidal anti-inflammatory drugs from biological fluids prior to HPLC-DAD determination, J. Pharmaceut. Biomed. Anal., 174, 509, 10.1016/j.jpba.2019.06.023 Khan, 2020, Hollow fiber-based liquid phase microextraction followed by analytical instrumental techniques for quantitative analysis of heavy metal ions and pharmaceuticals, J. Pharm. Anal., 10, 109, 10.1016/j.jpha.2019.12.003 Khalili Zanjani, 2007, A new liquid-phase microextraction method based on solidification of floating organic drop, Anal. Chim. Acta, 585, 286, 10.1016/j.aca.2006.12.049 Ghorbani, 2019, Dispersive solid phase microextraction, TrAC Trends Anal. Chem. (Reference Ed.), 118, 793, 10.1016/j.trac.2019.07.012 Jalili, 2020, Solid-phase microextraction technique for sampling and preconcentration of polycyclic aromatic hydrocarbons: a review, Microchem. J., 157, 10.1016/j.microc.2020.104967 Kokosa, 2015, Recent trends in using single-drop microextraction and related techniques in green analytical methods, TrAC Trends Anal. Chem. (Reference Ed.), 71, 194, 10.1016/j.trac.2015.04.019 Dikmen, 2020, A novel and rapid extraction protocol for sensitive and accurate determination of prochloraz in orange juice samples: vortex-assisted spraying-based fine droplet formation liquid-phase microextraction before gas chromatography–mass spectrometry, J. Mass Spectrom., 55, 10.1002/jms.4622 King, 2010, Analysis of variance, 32 Brown, 2005, A new software for carrying out one-way ANOVA post hoc tests, Comput, Methods Progr. Biomed., 79, 89, 10.1016/j.cmpb.2005.02.007 Chormey, 2018, Principles and recent advancements in microextraction techniques, Compr. Anal. Chem., 81, 257, 10.1016/bs.coac.2018.03.011 Aydin, 2020, Cu2O-CuO ball like/multiwalled carbon nanotube hybrid for fast and effective ultrasound-assisted solid phase extraction of uranium at ultra-trace level prior to ICP-MS detection, Talanta, 207, 10.1016/j.talanta.2019.120295 Almeida, 2012, A novel dispersive liquid–liquid microextraction (DLLME) gas chromatography-mass spectrometry (GC–MS) method for the determination of eighteen biogenic amines in beer, Food Contr., 25, 380, 10.1016/j.foodcont.2011.10.052 Sanagi, 2009, Comparison of signal-to-noise, blank determination, and linear regression methods for the estimation of detection and quantification limits for volatile organic compounds by gas chromatography, J. AOAC Int., 92, 1833 de Oliveira, 2007, Stereoselective determination of hydroxychloroquine and its metabolites in human urine by liquid-phase microextraction and CE, Electrophoresis, 28, 1081, 10.1002/elps.200600420