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Harapan H., Itoh N., Yufika A. et al. Coronavirus disease 2019 (COVID-19): A literature review // Journal of Infection and Public Health. – 2020. – N 13. – Pp. 667-673.
McCloskey B., Heymann D.L. SARS to novel coronavirus: old lessons and new lessons // Epidemiol. Infect. – 2020. – 22:e22.
Majumder M.S., Mandl K.D. Early in the epidemic: impact of preprints on global discourse about COVID-19 transmissibility // Lancet Glob Health. – 2020. – March 24. – Аccess mode: https://doi.org/10.1016/S2214-109X(20)30113-3.
Liu W., Morse J.S., Lalonde T. et al. Learning from the past: possible urgent prevention and treatment options for severe acute respiratory infections caused by 2019-nCoV // Chembiochem. – 2020. –N 21 (5). – Pp. 730-738.
Hoffmann M., Kleine-Weber H., Krüger N. et al. The novel coronavirus 2019 (2019- nCoV) uses the SARS-coronavirus receptor ACE2 and the cellular protease TMPRSS2 for entry into target cells // BIOR. – XIV. – 2020. – Pp. 2022-2023.
Li T., Lu H., Zhang W. Clinical observation and management of COVID-19 patients // Emerg Microbes Infect. – 2020. – N 9 (1). – Pp. 687-690.
Varga Z., Flammer A.J., Steiger P. et al. Endothelial cell infection and endotheliitis in COVID-19 // Lancet. – 2020. – S0140–736(20)30937–5.
Dalamaga M., Karampela I., Mantzoros C.S. 19 treatment regimens? // Metabolism. – 2020. – May 8. – Аccess mode: https://doi.org/10.1016/j.metabol.2020.154260/.
Rivellese F. ACE2 at the centre of COVID-19 from paucisymptomatic infections to severe pneumonia / F. Rivellese, Е. Prediletto, W. Harvey, Q. Mary // Autoimmunity Reviews. – 2020. – N 19. – 102536. – Аccess mode: https://doi.org/10.1016/j.autrev.2020. 102536/.
Qin C., Zhou L., Hu Z. et al. Dysregulation of immune response in patients with COVID19 in Wuhan // China Clin Infect Dis. – 2020. – Аccess mode: https://doi.org/10.1093/ cid/ciaa248/.
Li G., Fan Y., Lai Y. et al. Coronavirus infections and immune responses // J Med Virol. – 2020. – N 92. – Pp. 424-432.
Prompetchara E., Ketloy C., Palaga T. Immune responses in COVID-19 and potential vaccines: Lessons learned from SARS and MERS epidemic // Asian Pac J Allergy Immunol. – 2020. – N 38. – Pp. 1-9.
Totura A.L., Baric R.S. SARS coronavirus pathogenesis: host innate immune responses and viral antagonism of interferon // Curr Opin Virol. – 2012. –N 2. – Pp. 264-275.
Pedersen F., Ho Y.C. SARS-CoV-2: a storm is raging //J. Clin. Invest. – 2020. – Аccess mode: https://doi.org/10.1172/JCI137647/.
Liu W., Li H. COVID-19: Attacks the 1-Beta chain of hemoglobin and captures the Porphyrin to inhibit human Heme metabolism. – 2020. – Аccess mode: https://doi.org/- 10.26434/chemrxiv.11938173.v7/.
Drakesmith H., Prentice A. Viral infection and iron metabolism // Nat Rev Microbiol. – 2008. – N 6. – Pp. 541-552.
Wessling-Resnick M. Iron homeostasis and the inflammatory response // Annu Rev Nutr. – 2010. – N 30. –Pp. 105-122.
Ali M.K., Kim R.Y., Brown A.C. et al. Critical role for iron accumulation in the pathogenesis of fibrotic lung disease // J Pathol. – 2020. – Feb 21. – Аccess mode: https://doi.org/10.1002/path.5401/
Favallia E.G., Ingegnolia F., De Lucia O. et al. COVID-19 infection and rheumatoid arthritis: Faraway, so close! // Autoimmunity Reviews. –2020. – N 19. – Аccess mode: https://doi.org/10.1016/ j.autrev.2020.102523/.
Caso F., Costa L., Ruscitti P. et al. Could Sarscoronavirus-2 trigger autoimmune and/or autoinflammatory mechanisms in genetically predisposed subjects? // Autoimmun Rev. – 2020. – Аccess mode: https://doi.org/10.1016/j.autrev.2020.102524/.
Zhou F., Yu T., Du R. et al. Clinical course and risk factors for mortality of adult inpatients with COVID-19 in Wuhan, China: a retrospective cohort study. // Lancet. – 2020. – Аccess mode: https://doi.org/10.1016/S0140-6736(20)30566-3/.
Caso F., Costa L., Ruscitti P. et al. Could Sarscoronavirus-2 trigger autoimmune and/or autoinflammatory mechanisms in genetically predisposed subjects? // Autoimmun Rev. – 2020. – Аccess mode: https://doi.org/10.1016/j.autrev.2020.102524/.
Cao B., Wang Y., Wen D. et al. A trial of lopinavir-ritonavir in adults hospitalized with severe COVID-19 // N Engl J Med. – 2020. – Mar 18. – Аccess mode: https://doi.org/ 10.1056/NEJMoa 2001282/.
Yu-chen Cao, Qi-xin Deng, Shi-xue Dai. Remdesivir for severe acute respiratory syndrome coronavirus 2 causing COVID-19: An evaluation of the evidence // Travel Medicine and Infectious Disease [Published Online]. – 2020. – Аccess mode: https://www.elsevier.com/ locate/tmaid/1-s2.0-S1477893920301162/
Chong C.R., Sullivan D.J.Jr. New uses for old drugs // Nature. – 2007. – N 448 (7154). – Pp. 645-646.
Smith N., Fraser M. Straining the System: Novel Coronavirus (COVID-19) and Preparedness for Concomitant Disasters // Am J Public Health. – 2020. – N 110 (5). – P. 649.
Zhang H., Saravanan K.M., Yang Y. et al. Deep Learning Based Drug Screening for Novel Coronavirus 2019-nCoV // Preprints. – 2020. – Аccess mode: https://www.preprints.org /manuscript /202002.0061/v1/. – DOI: 10.20944/ preprints202002.0061.v1/
Lim J., Jeon S., Shin H.Y. et al. Case of the Index Patient Who Caused Tertiary Transmission of COVID-19 Infection in Korea: the Application of Lopinavir/Ritonavir for the Treatment of COVID-19 Infected Pneumonia Monitored by Quantitative RT-PCR // J Korean Med Sci. – 2020. – N 35 (6).
Lythgoe M.P., Middleton P. Ongoing Clinical Trials for the Management of the COVID19 Pandemic // Trends in Pharmacological Sciences. – 2020. – Аccess mode: https://doi.org/ 10.1016/j.tips.2020.03.006/.
Li H., Wang Y.M., Xu J.Y. et al. Potential antiviral therapeutics for 2019 Novel Coronavirus // Zhonghua Jie He Hu Xi Za Zhi. – 2020. – N 43 (3). – Pp. 170-172.
Lu H. Drug treatment options for the 2019-new coronavirus (2019-nCoV) // Biosci Trends. – 2020. – N 14 (1). – Pp. 69-71.
Wen Zhanga, Yan Zhaoa, Fengchun Zhanga et al. The use of anti-inflammatory drugs in the treatment of people with severe coronavirus disease 2019 (COVID-19): The Perspectives of clinical immunologists from China // Clinical Immunology. – 2020. – Аccess mode: https://doi.org/10.1016/j.clim.2020. 108393/.
Suba Z. Prevention and Therapy of COVID-19 via Exogenous Estrogen Treatment for Both Male and Female Patients: An Opinion Paper // J Pharm Pharm Sci. – 2020. – N 23. – Pp. 75-85.
Rui Zhanga, Xuebin Wanga, Leng Nia et al. COVID-19: Melatonin as a potential adjuvant treatment // Life Sciences. – 2020. – Аccess mode: https://doi.org/10.1016/j. lfs.2020.117583/.
Carbonib E., Cartaa A.R., Carbonia E. Can pioglitazone be potentially useful therapeutically in treating patients with covid-19? // Medical Hypotheses. – 2020. – Аccess mode: https://doi.org/10.1016/j.mehy.2020.109776/.
Cure E., Cure M.C. Can dapagliflozin have a protective effect against COVID-19 infection? A hypothesis Diabetes & Metabolic Syndrome // Clinical Research & Reviews. – 2020. – N 14. – Pp. 405-406.
Zumla A., Chan J.F.W., Azhar E.I. et al. Coronaviruses – drug discovery and therapeutic options // Drug discovery. – 2016. –N 15. – Pp. 327-346.
Abreu G.E.A. Amantadine as a drug to mitigate the effects of COVID-19 / G.E.A. Abreu, M.E.H. Aguilar, D.H. Covarrubias, F.R. Durán // Medical Hypotheses. – 2020. – Аccess mode: https://doi.org/10.1016/j.mehy.2020.109755/.
Farouka A., Salmanb S. Dapsone and doxycycline could be potential treatment modalities for COVID-19 // Medical Hypotheses. – 2020. – Аccess mode: https://doi.org/ 10.1016/j.mehy.2020.109768/.
Sheahan T.P., Sims A.C., Leist S.R. et al. Comparative therapeutic efficacy of Remdesivir and combination Lopinavir, ritonavir, and interferon beta against MERS–COV // Nat Commun. – 2020. – N 11. – P. 222.
Meynard J.L., Moinot L., Landman R. et al. Week 96 efficacy of lopinavir/ritonavir monotherapy in virologically suppressed patients with HIV: a randomized non-inferiority trial (ANRS 140 DREAM) // J Antimicrob Chemother. – 2018. – N 73. – Pp. 1672–1676. – Аccess mode: https://doi.org/10.1093/jac/dky055/
Sham H.L. et al. ABT-378, a highly potent inhibitor of the human immunodeficiency virus protease // Antimicrob. Agents Chemother. – 1998. – N 42. – Pp. 3218-3224.
Van der Laan L.E., Garcia-Prats A.J., Schaaf H.S. et al. Pharmacokinetics and drug– drug interactions of lopinavir–ritonavir administered with first- and second-line antituberculosis drugs in HIV-infected children treated for multidrug-resistant tuberculosis // Antimicrob Agents Chemother. – 2018. – N 62. – pii: e00420-17. – Аccess mode: https://doi.org/10.1128/aac.00420-17/
Mallal S., Nolan D., Witt C. et al. Association between presence of HLA-B*5701, HLADR7, and HLA-DQ3 and hypersensitivity to HIV-1 reverse-transcriptase inhibitor abacavir // Lancet. – 2002. – N 359. – Pp. 727-732.
Littera R., Carcassi C., Masala A. et al. HLA-dependent hypersensitivity to nevirapine in Sardinian HIV patients // AIDS. – 2006. – N 20. – Pp. 1621-1626.
Rotger M., Colombo S., Furrer H. et al. Influence of CYP2B6 polymorphism on plasma and intracellular concentrations and toxicity of efavirenz and nevirapine in HIV-infected patients // Pharmacogenet Genom. – 2005. – N 15. – Pp. 1-5
Dickinson L., Chaponda M., Carr D.F. et al. Population pharmacokinetic and pharmacogenetic analysis of nevirapine in hypersensitive and tolerant HIV-infected patients from Malawi // Antimicrobial Agents Chemother. – 2014. – N 58. – Pp. 706-712.
Martín A.S., Gómez A.I., García-Berrocal B. et al. Dose reduction of efavirenz: an observational study describing cost-effectiveness, pharmacokinetics and pharmacogenetics // Pharmacogenomics. – 2014. – N 15. – Pp. 997-1006.
Pavlos R., Phillips E.J. Individualization of antiretroviral therapy // Pharmgenomics Pers Med. – 2012. – N 5. – Pp. 1-17.
Anderson P.L., Lamba J., Aquilante C.L. et al. Pharmacogenetic characteristics of indinavir, zidovudine, and lamivudine therapy in HIV-infected adults: a pilot study // J Acquir Immune Defic Syndr. – 2006. – N 42. – Pp. 441-449.
Мавлянов И.Р. Лекарственная аллергия: иммуннофармакологические аспекты / И.Р. Мавлянов, А.Х. Аширметов, З.И. Мавлянов, Н.В. Пирматова. – Т., 2015. – 102 с.
Мавлянов И.Р. Персонализированная фармакотерапия: цитохром Р-450 и его изoформы / И.Р. Мавлянов, А.Х. Аширметов, А.Ш. Касимов, З.И. Мавлянов. – Т., 2016. – 300 с.
Mavlyanov I.R. Cytochrome P-450: genetic and population aspects / I.R. Mavlyanov, A.Kh. Ashirmetov, Z.I. Mavlyanov, G.I. Jarilkasinova. – Kosice, 2017. – 224 p.