In silico exploration of binding potentials of anti SARS-CoV-1 phytochemicals against main protease of SARS-CoV-2
Author:
Funder
King Khalid University
Publisher
Elsevier BV
Subject
General Chemistry
Reference28 articles.
1. WHO Health Emergency Dashboard WHO (COVID-19) Homepage.
2. A. Chafekar, B. C. Fielding, MERS-CoV: Understanding the latest human coronavirus threat. Viruses 10 (2018) 93-114; 10.3390/v10020093.
3. Coronavirus as a possible cause of severe acute respiratory syndrome;Peiris;Lancet,2003
4. K. Anand, J. Ziebuhr, P. Wadhwani, J. R. Mesters, R. Hilgenfeld, Coronavirus main proteinase (3CLpro) structure: basis for design of anti-SARS drugs. Science 300 (2003) 1763-1767; 10.1126/science.1085658.
5. (a) P. Zhou, X. L. Yang, X. G. Wang, B. Hu, L. Zhang, W. Zhang, H. R. Si, Y. Zhu, B. Li, C. L. Huang, H. D. Chen, J. Chen, Y. Luo, H. Guo, R. D. Jiang, M. Q. Liu, Y. Chen, X. R. Shen, X. Wang, X. S. Zheng, K. Zhao, Q. J. Chen, F. Deng, L. L. Liu, B. Yan, F. X. Zhan, Y. Y. Wang, G. F. Xiao and Z. L. Shi, A pneumonia outbreak associated with a new coronavirus of probable bat origin. Nature 579 (2020) 270-273
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