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Rapid Structure-Based Screening Informs Potential Agents for Coronavirus Disease (COVID-19) Outbreak. | LitMetric

Rapid Structure-Based Screening Informs Potential Agents for Coronavirus Disease (COVID-19) Outbreak.

Chin Phys Lett

MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Science, Xi'an Jiaotong University, Xi'an 710049.

Published: May 2020

AI Article Synopsis

  • - COVID-19, caused by a new coronavirus, is rapidly spreading in China, prompting the need for new drugs for prevention and treatment of infections.
  • - A virtual screening approach studied existing drugs to see how they interact with key proteins of the virus, revealing potential candidates like Arbidol, Chloroquine, and Remdesivir that could block the virus's entry into cells.
  • - The main protease of the virus (3CLpro) was identified as a promising target for drug design, with several compounds such as Mitoguazone and Metformin showing potential as inhibitors in treating COVID-19.

Article Abstract

Coronavirus Disease 2019 (COVID-19), caused by the novel coronavirus, has spread rapidly across China. Consequently, there is an urgent need to sort and develop novel agents for the prevention and treatment of viral infections. A rapid structure-based virtual screening is used for the evaluation of current commercial drugs, with structures of human angiotensin converting enzyme II (ACE2), and viral main protease, spike, envelope, membrane and nucleocapsid proteins. Our results reveal that the reported drugs Arbidol, Chloroquine and Remdesivir may hinder the entry and release of virions through the bindings with ACE2, spike and envelope proteins. Due to the similar binding patterns, NHC (β-d-N4-hydroxycytidine) and Triazavirin are also in prospects for clinical use. Main protease (3CLpro) is likely to be a feasible target of drug design. The screening results to target 3CL-pro reveal that Mitoguazone, Metformin, Biguanide Hydrochloride, Gallic acid, Caffeic acid, Sulfaguanidine and Acetylcysteine seem be possible inhibitors and have potential application in the clinical therapy of COVID-19.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7351243PMC
http://dx.doi.org/10.1088/0256-307X/37/5/058701DOI Listing

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