POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH

At the end of 2019, a new virus emerged from Wuhan, China named Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2). The key to viral infection to host cells is the use of the ACE2 receptor. This study aimed to explore the potential of drugs in Annona muricata plant using the Insilico meth...

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Main Authors: Miftahul Mushlih Mushlih, Andika Aliviameita, Puspitasari Puspitasari, Ahmad Shobrun Jamil
Format: Article
Language:Indonesian
Published: Fakultas Kesehatan Universitas Nahdlatul Ulama Surabaya 2022-08-01
Series:Medical Technology and Public Health Journal
Subjects:
Online Access:https://103.106.72.77/index.php/MTPHJ/article/view/3069
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author Miftahul Mushlih Mushlih
Andika Aliviameita
Puspitasari Puspitasari
Ahmad Shobrun Jamil
author_facet Miftahul Mushlih Mushlih
Andika Aliviameita
Puspitasari Puspitasari
Ahmad Shobrun Jamil
author_sort Miftahul Mushlih Mushlih
collection DOAJ
description At the end of 2019, a new virus emerged from Wuhan, China named Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2). The key to viral infection to host cells is the use of the ACE2 receptor. This study aimed to explore the potential of drugs in Annona muricata plant using the Insilico method. Compounds obtained from KNApSAcK Based on the analysis using SwissADME (Lipinski creteria)criteria. 22 compounds passed the selection. Eight ligands were identified as being able to change the conformation of the initial form of RBD and ACE2 attachment. Eight molecules are able to change the initial conformation, namely Asimilobine, Coreximine, (+)-Stepharine, Coclaurine, Norcorydine, N- Nornuciferinhe, methoxyphenyl)methyl]-1,2,3,4-tetrahydroisoquinolin-5-ol, and Atherosperminine.
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spelling doaj.art-6063a5be5d5146ddb2bd3b8773cd0d412022-12-22T02:18:50ZindFakultas Kesehatan Universitas Nahdlatul Ulama SurabayaMedical Technology and Public Health Journal2549-189X2549-29932022-08-016110.33086/mtphj.v6i1.3069POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACHMiftahul Mushlih Mushlih0Andika AliviameitaPuspitasari PuspitasariAhmad Shobrun Jamiluniversitas Muhammadiyah Sidoarjo At the end of 2019, a new virus emerged from Wuhan, China named Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2). The key to viral infection to host cells is the use of the ACE2 receptor. This study aimed to explore the potential of drugs in Annona muricata plant using the Insilico method. Compounds obtained from KNApSAcK Based on the analysis using SwissADME (Lipinski creteria)criteria. 22 compounds passed the selection. Eight ligands were identified as being able to change the conformation of the initial form of RBD and ACE2 attachment. Eight molecules are able to change the initial conformation, namely Asimilobine, Coreximine, (+)-Stepharine, Coclaurine, Norcorydine, N- Nornuciferinhe, methoxyphenyl)methyl]-1,2,3,4-tetrahydroisoquinolin-5-ol, and Atherosperminine. https://103.106.72.77/index.php/MTPHJ/article/view/3069booster covid-19SARS-CoV-2herbalmedicine
spellingShingle Miftahul Mushlih Mushlih
Andika Aliviameita
Puspitasari Puspitasari
Ahmad Shobrun Jamil
POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
Medical Technology and Public Health Journal
booster covid-19
SARS-CoV-2
herbal
medicine
title POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
title_full POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
title_fullStr POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
title_full_unstemmed POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
title_short POTENTIAL MOLECULES AGAINST COVID-19 FROM ANNONA MURICATA; AN IN-SILICO APPROACH
title_sort potential molecules against covid 19 from annona muricata an in silico approach
topic booster covid-19
SARS-CoV-2
herbal
medicine
url https://103.106.72.77/index.php/MTPHJ/article/view/3069
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AT andikaaliviameita potentialmoleculesagainstcovid19fromannonamuricataaninsilicoapproach
AT puspitasaripuspitasari potentialmoleculesagainstcovid19fromannonamuricataaninsilicoapproach
AT ahmadshobrunjamil potentialmoleculesagainstcovid19fromannonamuricataaninsilicoapproach