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Articles

Network pharmacology integrated molecular docking reveals the potential of Hypericum japonicum Thunb. ex Murray against COVID-19

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Pages 453-461 | Received 18 Nov 2020, Accepted 03 Feb 2021, Published online: 02 Mar 2021

References

  • Harapan H, Itoh N, Yufika A, et al. Coronavirus disease 2019 (COVID-19): a literature review. J Infect Public Health. 2020; 13(5):667–673.
  • Zou Q, Li H, Zeng H. Current status and countermeasures for development of drugs to treat coronavirus disease 2019. J Third Military Med Univ. 2020; 42(9):861–866.
  • Liu M, Gao Y, Yuan Y, et al. Efficacy and safety of integrated traditional chinese and western medicine for Corona Virus Disease 2019 (COVID-19): a systematic review and meta-analysis. Pharmacol Res. 2020; 158 :104896.
  • Pang B, Zhang J, Lee MS, et al. Enlightenment from clinical trials on Chinese medicine for Coronavirus Disease 2019 (COVID-19). Integr Med Res. 2020; 9(3):100481
  • Xiao M, Tian J, Zhou Y, et al. Efficacy of Huoxiang Zhengqi dropping pills and Lianhua Qingwen granules in treatment of COVID-19: a randomized controlled trial. Pharmacol Res . 2020; 161 :105126.
  • Zhao Z, Li Y, Zhou L, et al. Prevention and treatment of COVID-19 using traditional Chinese medicine: a review. Phytomedicine. 2020; 153308.
  • Lin A, Song E, Lee HW, et al. Herbal medicine for the treatment of Coronavirus Disease 2019 (COVID-19): a systematic review and meta-analysis of randomized controlled trials. J Clin Med. 2020;9(5):1583.
  • Li P, Su W. Recent progress in applying network pharmacology to research of Chinese materia medica. Chinese Tradit Herbal Drugs. 2016;47(16):2938–2942.
  • Meng XY, Zhang HX, Mezei M, et al. Molecular docking: a powerful approach for structure-based drug discovery. Curr Comput Aided Drug Des. 2011;7(2):146–157.
  • Liu LS, Liu MH, He JY. Hypericum japonicum Thunb. ex Murray: phytochemistry, pharmacology, quality control and pharmacokinetics of an important herbal medicine. Molecules. 2014; 19(8):10733–10754.
  • Liu N, Hu X, Meng Y, et al. Effect of Anti-influenza Virus H3N2 of Hypericum japonicum in vivo. J Chinese Medic Mater. 2008;31(7):1022–1024.
  • Li P, Yang C, Wang Y, et al. Experimental study on anti-duck hepatitis B virus effect of Hypericum japonicum extract. J Chinese Medic Mater. 2011; 34(6):956–958.
  • Li P, Yang C, Wang Y, et al. Effect of anti-hepatic fibrosis of Hypericum japonicum in rats. J Chinese Medic Mater. 2011; 34(3):424–428.
  • Su W, Wang Y, Yao H, et al. Multidisciplinary combined technology based research on Hypericum japonicum. Guangzhou: Sun Yat-sen University Press, 2020.
  • Chen P, Yao H, Yuan Q, et al. Discovery of the possible mechanisms in kouyanqing granule for treatment of oral ulcers based on network pharmacology. BMC Complement Med Ther. 2020;20(1):258
  • Xu X, Chen P, Wang J, et al. Evolution of the novel coronavirus from the ongoing Wuhan outbreak and modeling of its spike protein for risk of human transmission. Sci China Life Sci. 2020;63(3):457–460.
  • Wrapp D, Wang N, Corbett KS, et al. Cryo-EM structure of the 2019-nCoV spike in the prefusion conformation. Science. 2020;367(6483):1260–1263.
  • Zhang Q, Zheng W, Xiao J, et al. Broad spectrum inhibitors of 3C and 3CL proteases: research advances. J Int Pharmaceut Res. 2016;43(3):425–430.
  • Yang Y, Sun L, Chen Z. Structure and functions of papain-like protease of severe acute respiratory syndrome (SARS) coronavirus. Chinese J Biochem Molec Biol. 2010; 26(1):15–21.
  • Yang M, Zhou N, Wang Z, et al. Research progress on the role of transcription factor HIF-1α and its signal pathway in the pathogenesis. Biotechnol Bullet. 2016; 32(8):8–13.
  • Huang C, Wang Y, Li X, et al. Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China. Lancet. 2020; 395(10223):497–506.
  • Liu J, Li S, Liu J, et al. Longitudinal characteristics of lymphocyte responses and cytokine profiles in the peripheral blood of SARS-CoV-2 infected patients. EBioMedicine. 2020;55:102763.
  • Zhu L, Ding X, Zhu X, et al. Biphasic activation of PI3K/Akt and MAPK/Erk1/2 signaling pathways in bovine herpesvirus type 1 infection of MDBK cells. Vet Res. 2011;42(1):57
  • Huang ZQ, Pan C, Su WW, et al. Antioxidant activity and hepatoprotective potential of Quercetin 7-Rhamnoside in vitro and in vivo. Molecules. 2018; 23(5):1188.
  • Choi HJ, Kim JH, Lee CH, et al. Antiviral activity of quercetin 7-rhamnoside against porcine epidemic diarrhea virus . Antiviral Res. 2009; 81(1):77–81.
  • Song JH, Shim JK, Choi HJ. Quercetin 7-rhamnoside reduces porcine epidemic diarrhea virus replication via independent pathway of viral induced reactive oxygen species. Virol J. 2011; 8 :460
  • Reutrakul V, Chanakul W, Pohmakotr M, et al. Anti-HIV-1 constituents from leaves and twigs of Cratoxylum arborescens. Planta Med. 2006; 72(15):1433–1435.
  • Chiow KH, Phoon MC, Putti T, et al. Evaluation of antiviral activities of Houttuynia cordata Thunb. extract, quercetin, quercetrin and cinanserin on murine coronavirus and dengue virus infection. Asian Pac J Trop Med. 2016; 9(1):1–7.
  • Fan D, Zhou X, Zhao C, et al. Anti-inflammatory, antiviral and quantitative study of quercetin-3-O-β-D-glucuronide in Polygonum perfoliatum L. Fitoterapia. 2011; 82(6):805–810.