JRST (Jurnal Riset Sains dan Teknologi)
Volume 10 No. 2, September 2026 :JRST

Identification of Potential Compounds of Green Tea (Camellia sinensis) in Inhibiting SARS-CoV-2: a Multi-Target Approach Based on Molecular Docking

Farhan Fauzan (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Meilisa Dwi Puteri (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Tria Putriani (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Yudhistia Putri Alwahida (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Siti Nurhaliza Hasibuan (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Naura Nurnahari (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )
Winni Nur Auli (Department of Pharmacy, Faculty of Science, Institut Teknologi Sumatra, Indonesia )



Article Info

Publish Date
01 Sep 2026

Abstract

SARS-CoV-2 is a new betacoronavirus that has a complex replication pathway through the Mpro, TMPRSS2, and RdRp proteins. This study aims to analyze the potential and molecular mechanisms of catechin-derived compounds from green tea (Camellia sinensis), using a multi-target approach based on molecular docking. Predictions of physicochemical properties and toxicity were analyzed using SwissADME, pkCSM, and Toxtree v3.1.0.1851. Protein and ligand structure preparation used PDB, MolView, and Avogadro. Then, molecular docking was analyzed using AutoDock4 1.5.6 and BIOVIA Discovery Studio. The analysis results showed that the EGCG compound had the best affinity with Mpro (-7.6 kcal/mol) at the cyad catalytic site (His 41 and Cys 145), the CG compound with TMPRSS2 (-7.95 kcal/mol) at the triad catalytic site (His 26 and Ser 441), and the ECG compound with RdRp (-7.51 kcal/mol) at the replication catalytic site (Lys 73 and Phe 219). These results indicate that the catechin compound from green tea has the potential to inhibit SARS-CoV-2 replication in a multi-target manner through the mechanism of inhibition of the catalytic and replication sites, thereby overcoming the complexity of virus replication and avoiding resistance

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Journal Info

Abbrev

JRST

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Chemistry Civil Engineering, Building, Construction & Architecture Computer Science & IT Engineering

Description

JRST (Jurnal Riset Sains dan Teknologi) adalah jurnal peer reviewed dan Open-Acces. JRST merupakan jurnal yang diterbitkan oleh Lembaga Publikasi Ilmiah dan Penerbitan (LPIP) Universitas Muhammadiyah Purwokerto. JRST mengundang para peneliti, dosen, dan praktisi di seluruh dunia untuk bertukar dan ...