Analytical review of Tiryāq-i-Wabāī – A Unani panacea for the control of COVID-19
Tài liệu tham khảo
Ahmed, 2021, In-silico evaluation of Tiryāq-i-Wabāī, an Unani formulation for its potency againstSARS-CoV-2 spike glycoprotein and main protease, J. Drug Deliv. Ther., 11, 86, 10.22270/jddt.v11i4-S.4993
Alhussaini, 2015, An evaluation of the antimicrobial activity of Commiphora myrrha Nees (Engl.) oleo-gum resin from Saudi Arabia, J. Med. Sci., 15, 198, 10.3923/jms.2015.198.203
Al-Samarrai, 2017, Studying phytochemical, nutritive and antioxidant ability of Commiphora myrrh, Al-Mustansiriyah J. Pharm. Sci. (AJPS), 17, 52
Aman, 2020, How nutrition can help to fight against COVID-19 pandemic, Pak. J. Med. Sci., 36, S121, 10.12669/pjms.36.COVID19-S4.2776
Anfinrud, 2020, Could SARS-CoV-2 be transmitted via speech droplets?, medRxiv, 2020, 20051177
Anonymous, 2006. Al-Qarābādīn. Central Council for Research in Unani Medicine, New Delhi.
Ashry, 2010, Oxidative stress and immunotoxic effects of lead and their amelioration with myrrh (Commiphora molmol) emulsion, Food Chem. Toxicol., 48, 236, 10.1016/j.fct.2009.10.006
Baghdādī, I. H., 2007. Kitāb al-Mukhtārāt fi’l Ṭibb. Central Council for Research in Unani Medicine, New Delhi.
Baghdādī, I.H., 2005. Kitāb al-Mukhtārāt fi’l Ṭibb. Central Council for Research in Unani Medicine, New Delhi.
Baitār, 1999
Baitār, I., 2000. Kitāb al-Jāmi‘ li Mufradāt al-Advia wa’l ‘Aghziya. Central Council for Research in Unani Medicine, New Delhi.
Baitār, I., 2003. Kitāb al-Jāmi‘ li Mufradāt al-Advia wa’l ‘Aghziya. Central Council for Research in Unani Medicine, New Delhi.
Batiha, 2023, Commiphora myrrh: a phytochemical and pharmacological update, Naunyn-Schmiede 'S. Arch. Pharmacol., 396, 405, 10.1007/s00210-022-02325-0
Boskabady, 2016, Antiinflammatory, antioxidant, and immunomodulatory effects of crocus sativus L. and its main constituents, Phytother. Res., 30, 1072, 10.1002/ptr.5622
Bukhari, 2018, A comprehensive review of the pharmacological potential of Crocus sativus and its bioactive apocarotenoids, Biomed. Pharmacother., 98, 733, 10.1016/j.biopha.2017.12.090
Dai, 2017, Emodin inhibition of influenza a virus replication and influenza viral pneumonia via the Nrf2, TLR4, p38/JNK and NF-kappaB Pathways, Molecules, 22, 1754, 10.3390/molecules22101754
Del Rio, 2020, COVID-19-new insights on a rapidly changing epidemic. JAMA. 10, 1001/jama, 2020, 3072
Fahad, 2018, Phytochemical and therapeutic potential of Mur Makki (Commiphora mirrha): a review, Indian. J. Appl. Res., 8, 102
Fazil, 2022, Therapeutic and palliative role of a Unani herbal decoction in COVID-19 and similar respiratory viral illnesses: Phytochemical & pharmacological perspective, J. Ethnopharmacol., 297, 10.1016/j.jep.2022.115526
Gautret, 2020, Hydroxychloroquine and azithromycin as a treatment of COVID-19: results of an open-label non-randomized clinical trial, Int. J. Antimicrob. Agents, 10.1016/j.ijantimicag.2020.105949
Ge, 2019, Bioactive sesquiterpenoids and steroids from the resinous exudates of Commiphora myrrha, Nat. Prod. Res., 33, 309, 10.1080/14786419.2018.1448811
Ghadir, 2014, Commiphora myrrha and commiphora Africana essential oils, J. Chem. Pharm. Res, 6, 151
Ghanī, N., 2011. Khazāin al-Advia. Idara Kitab al-Shifa, New Delhi.
Ghanī, N., 2019. Qarābādīn-i Najm al-Ghanī. Idara Kitab al-Shifa, New Delhi.
Guo, 2020, The origin, transmission and clinical therapies on coronavirus disease 2019 (COVID-19) outbreak - an update on the status, Mil. Med. Res, 7, 11
Hafīz, 2005, Qarābādīn-i Jadīd. Central Council for Research in Unani Medicine
Hosseini, 2018, Saffron (Crocus sativus) petal as a new pharmacological target: a review, Iran. J. Basic. Med. Sci., 21, 1091
Hosseinzadeh, 2013, Avicenna's (Ibn Sina) the Canon of Medicine and saffron (Crocus sativus): a review, Phytother. Res., 27, 475, 10.1002/ptr.4784
Jean, 2020, Treatment options for COVID-19: The reality and challenges, J. Microbiol. Immunol. Infect., 53, 436, 10.1016/j.jmii.2020.03.034
Jurjānī, I., 2010. Zakhīrā Khawārizm Shahī. Idara Kitab al-Shifa, New Delhi.
Kabīruddīn, M., 1935. Bayāz-i Kabīr. Hikmat Book Depo, Hyderabad.
Kabīruddīn, M., 2007. Hummayāt-i Qānūn. Ejaz Publishing House, New Delhi.
Kamil, 2019, Biochemical, Anti-diarrhoeal and ant-gastric ulcer activities of Commiphora myrrha, Biomed. J. Sci. Tech. Res, 19, 14349
Kar, 2018, Phytochemical constituents of Aloe vera and their multifunctional properties: a comprehensive review, Int. J. Pharm. Sci. Res., 9, 1416
Khalil, 2020, Bactericidal activity of Myrrh extracts and two dosage forms against standard bacterial strains and multidrug-resistant clinical isolates with GC/MS profiling, AMB Express, 10, 21, 10.1186/s13568-020-0958-3
Khan, M.A., 2011. Iksīr-i A‘zam. Idara Kitab al-Shifa, New Delhi.
Khazdair, 2015, The effects of Crocus sativus (saffron) and its constituents on nervous system: A review, Avicenna. J. Phytomed, 5, 376
Kianbakht, 2011, Immunomodulatory effects of saffron: a randomized double-blind placebo-controlled clinical trial, Phytother. Res., 25, 1801, 10.1002/ptr.3484
Kiran, 2020, In Silico computational screening of Kabasura Kudineer - Official Siddha Formulation and JACOM against SARS-CoV-2 spike protein, J. Ayurveda. Integr. Med, S0975–9476
Kordzadeh, 2020, Investigation on penetration of saffron components through lipid bilayer bound to spike protein of SARS-CoV-2 using steered molecular dynamics simulation, Heliyon, 6, 10.1016/j.heliyon.2020.e05681
Kumar, 2019, Therapeutic potential of Aloe vera-A miracle gift of nature, Phytomedicine, 60, 10.1016/j.phymed.2019.152996
Leone, 2018, Phytotherapic use of the Crocus sativus L. (Saffron) and its potential applications: A brief overview, Phytother. Res., 32, 2364, 10.1002/ptr.6181
Ling, 2020, COVID-19: A critical care perspective informed by lessons learnt from other viral epidemics, Anaesth. Crit. Care. Pain. Med, 39, 163, 10.1016/j.accpm.2020.02.002
Meo, 2020, Efficacy of chloroquine and hydroxychloroquine in the treatment of COVID-19, Eur. Rev. Med. Pharmacol. Sci., 24, 4539
Michie, 1991, Frankincense and myrrh as remedies in children, J. R. Soc. Med, 84, 602, 10.1177/014107689108401011
Mohammad, 2014, Chemical composition of essential oil and in vitro antioxidant and antimicrobial activities of crude extracts of Commiphora myrrha resin. Ind. corps, Prod, 57, 10
Mokhtari-Zaer, 2015, Smooth muscle relaxant activity of Crocus sativus (saffron) and its constituents: possible mechanisms, Avicenna. J. Phytomed., 5, 365
Mukherjee, 2019, Antiviral Evaluation of Herbal Drugs. Quality Control and Evaluation of Herbal, Drugs, 599
Nigar, 2013, Evaluation of a Unani polyherbal formulation (Tiryaqe wabai) as an immunostimulator in elderly persons, Anc. Sci. Life, 33, 119
Nikhat, 2020, Overview of Covid-19; its prevention and management in the light of Unani medicine, Sci. Total. Environ., 728, 10.1016/j.scitotenv.2020.138859
Niknam, 2022, Potential therapeutic options for COVID-19: an update on current evidence, Eur. J. Med. Res., 27, 6, 10.1186/s40001-021-00626-3
Phan, 2020, Novel coronavirus: from discovery to clinical diagnostics, Infect. Genet. Evol., 79, 10.1016/j.meegid.2020.104211
Phan, 2020, Genetic diversity and evolution of SARS-CoV-2, Infect. Genet. Evol., 81, 10.1016/j.meegid.2020.104260
Qamarī, A.H., 2008. Minhāj al-Ilāj (Ghina Muna). Central Council for Research in Unani Medicine, New Delhi.
Racine, 2005, Quenching of singlet molecular oxygen by Commiphora myrrha extracts and menthofuran, Fitoterapia, 76, 316, 10.1016/j.fitote.2005.03.017
Rāzī, M., 1991. Kitāb al-Mansūrī. Central Council for Research in Unani Medicine, New Delhi.
Rushd, I., 1987. Kitāb al-Kulliyāt. Central Council for Research in Unani Medicine, New Delhi.
Samarqandī, 2007, Sharah Asbāb. Ejaz Publishing House, N. Delhi
Saoo, 1996, Antiviral Activity of Aloe Extracts against Cytomegalovirus, Phytother. Res., 10, 348, 10.1002/(SICI)1099-1573(199606)10:4<348::AID-PTR836>3.0.CO;2-2
Shen, 2012, The genus Commiphora: a review of its traditional uses, phytochemistry and pharmacology, J. Ethnopharmacol., 142, 319, 10.1016/j.jep.2012.05.025
Shereen, 2020, COVID-19 infection: Origin, transmission, and characteristics of human coronaviruses, J. Adv. Res, 24, 91, 10.1016/j.jare.2020.03.005
Shoemaker, 2005, In vitro anticancer activity of twelve Chinese medicinal herbs, Phytother. Res., 19, 649, 10.1002/ptr.1702
Sīnā, I., 2010. Al-Qānūn fi’l Ṭibb. Idara Kitab al-Shifa, New Delhi.
Soleymani, 2018, Antiviral effects of saffron and its major ingredients, Curr. Drug. Deliv., 15, 698, 10.2174/1567201814666171129210654
Su, 2011, Anti-inflammatory and analgesic activity of different extracts of Commiphora myrrha, J. Ethnopharmacol., 134, 251, 10.1016/j.jep.2010.12.003
Sun, 2018, Aloe polysaccharides inhibit influenza a virus infection-a promising natural anti-flu drug, Front. Microbiol., 9, 2338, 10.3389/fmicb.2018.02338
Surjushe, 2008, Aloe vera: a short review, Indian. J. Dermatol., 53, 163, 10.4103/0019-5154.44785
Tariq, 1986, Anti-inflammatory activity of Commiphora molmol, Agents Actions, 17, 381, 10.1007/BF01982655
Walls, 2020, Structure, function, and antigenicity of the SARS-CoV-2 Spike Glycoprotein, Cell, 181
Wan, 2020, Receptor recognition by the novel coronavirus from wuhan: an analysis based on decade-long structural studies of SARS coronavirus, J. Virol., 94, e00127, 10.1128/JVI.00127-20
World Health Organization (WHO)., 2022a. Weekly epidemiological update on COVID-19. 〈https://www.who.int/publications/m/item/weekly-epidemiological-update-on-covid-19---14-september-2022〉.
World Health Organization (WHO)., 2022b. Coronavirus disease (COVID-19) pandemic. 〈https://www.who.int/emergencies/diseases/novel-coronavirus-2019〉.
World Health Organization (WHO)., 2022c. World Health Emergency Dashboard. 〈https://covid19.who.int/region/searo/country/in〉.
Zandi, 2007, Antiviral activity of Aloe vera against herpes simplex virus type 2: an in vitro study, Afr. J. Biotechnol., 6, 1770, 10.5897/AJB2007.000-2276
Zeinali, 2019, Immunoregulatory and anti-inflammatory properties of Crocus sativus (Saffron) and its main active constituents: a review, Iran. J. Basic. Med. Sci., 22, 334
Zhang, 2015, The safety of herbal medicine: from prejudice to evidence, evid.-based complementary, Altern. Med.