Author: Mpiana, Pius T.; Ngbolua, Koto-te-Nyiwa; Tshibangu, Damien S.T.; Kilembe, Jason T.; Gbolo, Benjamin Z.; Mwanangombo, Domaine T.; Inkoto, Clement L.; Lengbiye, Emmanuel M.; Mbadiko, Clement M.; Matondo, Aristote; Bongo, Gedeon N.; Tshilanda, Dorothée D.
                    Title: Identification of potential inhibitors of SARS-CoV-2 main protease from Aloe vera compounds: A molecular docking study  Cord-id: gaik61xm  Document date: 2020_6_30
                    ID: gaik61xm
                    
                    Snippet: SARS-CoV-2 is the pathogen agent of the new corona virus disease that appeared at the end of 2019 in China. There is, currently, no effective treatment against COVID-19. We report in this study a molecular docking study of ten Aloe vera molecules with the main protease (3CLpro) responsible for the replication of coronaviruses. The outcome of their molecular simulation and ADMET properties reveal three potential inhibitors of the enzyme (ligands 6, 1 and 8) with a clear preference of ligand 6 tha
                    
                    
                    
                     
                    
                    
                    
                    
                        
                            
                                Document: SARS-CoV-2 is the pathogen agent of the new corona virus disease that appeared at the end of 2019 in China. There is, currently, no effective treatment against COVID-19. We report in this study a molecular docking study of ten Aloe vera molecules with the main protease (3CLpro) responsible for the replication of coronaviruses. The outcome of their molecular simulation and ADMET properties reveal three potential inhibitors of the enzyme (ligands 6, 1 and 8) with a clear preference of ligand 6 that has the highest binding energy (−7.9 kcal/mol) and fully obeys the Lipinski’s rule of five.
 
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