Coronavirus Main Proteinase (3CLpro) Structure: Basis for Design of Anti-SARS Drugs
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A Systematic Review of the Global Intervention for SARS-CoV-2 Combating: From Drugs Repurposing to Molnupiravir Approval
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TL;DR: The anti-SARS effect of some small molecule 3CLpro inhibitors with their various binding modes of interactions to the target protein are discussed.
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Battling COVID-19: Using old weapons for a new enemy
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Molecular Docking Analysis of Some Phytochemicals on Two Sars-Cov-2 Targets
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TL;DR: Virtual screening of some compounds of plants origin that have shown antiviral activities on the two targets, 6lu7 and 6vsb by docking with the PyRx software revealed that scopodulcic acid and dammarenolic acid had the best binding affinity on the s-glycoprotein and Mpro protein targets respectively.
References
IL-13受体α2降低血吸虫病肉芽肿的炎症反应并延长宿主存活时间[英]/Mentink-Kane MM,Cheever AW,Thompson RW,et al//Proc Natl Acad Sci U S A
TL;DR: 曼氏血吸虫感染后,宿主活化CD4^+Th2细胞L分泌IL-4、IL-5和 IL-13。
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Identification of a novel coronavirus in patients with severe acute respiratory syndrome.
Christian Drosten,Stephan Günther,Wolfgang Preiser,Sylvie van der Werf,H. R. Brodt,Stephan Becker,Holger F. Rabenau,Marcus Panning,Larissa Kolesnikova,Ron A. M. Fouchier,Annemarie Berger,Ana-Maria Burguière,Jindrich Cinatl,Markus Eickmann,Nicolas Escriou,Klaus Grywna,Stefanie Kramme,Jean-Claude Manuguerra,Stefanie Müller,Volker Rickerts,Martin Stürmer,Simon Vieth,Hans-Dieter Klenk,Albert D. M. E. Osterhaus,Herbert Schmitz,Hans Wilhelm Doerr +25 more
TL;DR: The novel coronavirus might have a role in causing SARS and was detected in a variety of clinical specimens from patients with SARS but not in controls.
A novel coronavirus associated with severe acute respiratory syndrome.
Thomas G. Ksiazek,Dean D. Erdman,Cynthia S. Goldsmith,Zaki,Teresa C. T. Peret,Shannon L. Emery,Suxiang Tong,Urbani C,James A. Comer,Wilina Lim,Pierre E. Rollin,Scott F. Dowell,Ai Ee Ling,Charles D. Humphrey,Wun-Ju Shieh,Jeannette Guarner,Christopher D. Paddock,Paul A. Rota,Barry S. Fields,Joseph L. DeRisi,Jyh-Yuan Yang,Nancy J. Cox,James M. Hughes,James W. LeDuc,William J. Bellini,Larry J. Anderson +25 more
TL;DR: A novel coronavirus is associated with this outbreak of severe acute respiratory syndrome, and the evidence indicates that this virus has an etiologic role in SARS.
Characterization of a novel coronavirus associated with severe acute respiratory syndrome.
Paul A. Rota,M. Steven Oberste,Stephan S. Monroe,W. Allan Nix,Ray Campagnoli,Joseph P. Icenogle,Silvia Peñaranda,Bettina Bankamp,Kaija Maher,Min hsin Chen,Suxiong Tong,Azaibi Tamin,Luis Lowe,Michael Frace,Joseph L. DeRisi,Qi Chen,David Wang,Dean D. Erdman,Teresa C. T. Peret,Cara C. Burns,Thomas G. Ksiazek,Pierre E. Rollin,Anthony Sanchez,Stephanie L. Liffick,Brian P. Holloway,Josef Limor,Karen A. McCaustland,Mellissa Olsen-Rasmussen,Ron A. M. Fouchier,Stephan Günther,Albert Osterhaus,Christian Drosten,Mark A. Pallansch,Larry J. Anderson,William J. Bellini +34 more
TL;DR: Phylogenetic analyses and sequence comparisons showed that SARS-CoV is not closelyrelated to any of the previouslycharacterized coronaviruses.
A Major Outbreak of Severe Acute Respiratory Syndrome in Hong Kong
Nelson Lee,David S.C. Hui,Alan Wu,Paul K.S. Chan,Peter Cameron,Gavin M. Joynt,Anil T. Ahuja,Man Yee Yung,Chi-Bon Leung,Ka Fai To,Siu F. Lui,Cheuk-Chun Szeto,S.C.Sydney Chung,Joseph J.Y. Sung +13 more
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