Visi Endah Pratitis
The Prodia Education and Research Institute, Jl. Kramat Raya No. 150, Jakarta, 10430

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Theaflavin as Potential Multi-Target Anti-Inflammatory Agent in Periodontitis: An in silico Approach Ferry Sandra; Trijani Suwandi; Ricky Anggara Putranto; Maria Leny Raiyon; Albert Albert; Visi Endah Pratitis
The Indonesian Biomedical Journal Vol 18, No 3 (2026)
Publisher : The Prodia Education and Research Institute (PERI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18585/inabj.v18i3.4255

Abstract

BACKGROUND: Periodontitis is a chronic inflammatory disease characterized by progressive periodontal tissue destruction and dysregulated inflammatory responses. Current therapies mainly target bacterial infection but are often less effective in controlling inflammation. Tea (Camellia sinensis) contains bioactive polyphenols with antimicrobial and anti-inflammatory properties, making it a promising alternative therapeutic candidate. However, molecular interactions of tea-derived compounds with inflammation-related proteins through molecular docking remain unclear. This study evaluate the binding affinity and interaction profiles of tea-derived compounds with inflammation-related to periodontitis protein targets using molecular docking.METHODS: Ligand and protein structures were retrieved from public databases and prepared using standard optimization protocols. Toxicity and pharmacokinetic properties were predicted using ProTox-3.0 and SwissADME, respectively. Molecular docking was performed using CB-Dock 2.0 with AutoDock Vina, and ligand-protein interactions were analyzed using Discovery Studio.RESULTS: All tested compounds, including catechin, epigallocatechin gallate (EGCG), theaflavin, and thearubigin showed low predicted toxicity. Theaflavin showed the strongest binding affinity across multiple targets, particularly against IRAK-4 (−9.8 kcal/mol), TLR4 (−9.2 kcal/mol), and IKK-β (−9.5 kcal/mol), supported by stable hydrogen bonds and hydrophobic interactions.CONCLUSION: Among all compounds, theaflavin exhibit strong multi-target binding potential against key inflammatory proteins in periodontitis, followed by EGCG and thearubigin. These findings support their potential as alternative or adjunctive anti-inflammatory agents, although further in vitro and in vivo validation are required.KEYWORDS: periodontitis, tea polyphenols, theaflavin, molecular docking, inflammation, NF-κB pathway
Potential Interaction of Propyl Gallate and Butylated Hydroxyanisole with EGFR–PI3K–Akt–mTOR Proteins in Oral and Gastrointestinal Carcinogenic Signaling Pathway: An in silico Molecular Docking Study Ferry Sandra; Visi Endah Pratitis; Dewi Priandini; Andrian Nova Fitri; Maria Leny Raiyon; Kyung Hoon Lee
The Indonesian Biomedical Journal Vol 18, No 4 (2026)
Publisher : The Prodia Education and Research Institute (PERI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18585/inabj.v18i4.4329

Abstract

BACKGROUND: Synthetic food preservatives are widely used to improve food stability and shelf life, but prolonged exposure may contribute to oral and gastrointestinal carcinogenesis. Epidermal growth factor receptor (EGFR)–phosphoinositide 3-kinase (PI3K)–protein kinase B (Akt)–mammalian target of rapamycin (mTOR) axis plays a pivotal role in regulating tumor initiation and progression; however, the potential interactions with cancer-related signaling proteins remain poorly understood. This study computationally evaluated the predicted binding interactions of commonly used synthetic food preservatives with proteins using molecular docking.METHODS: Propyl gallate (PG), butylated hydroxyanisole (BHA), tertiary-butylhydroquinone (TBHQ), potassium sorbate (PS), sodium benzoate (SB), and sodium metabisulfite (SMB) were evaluated for physicochemical properties using SwissADME. Molecular docking with EGFR, PI3K, Akt-1, and mTOR was performed using CB-Dock 2.0. Predicted ligand–protein interactions were analyzed using BIOVIA Discovery Studio 2016 and root mean square fluctuation (RMSF) was evaluated using CABS-flex 3.0.RESULTS: PG and BHA exhibited the most predicted binding affinities among the investigated preservatives. PG showed the strongest interactions with EGFR (−6.1 kcal/mol), PI3K (−6.8 kcal/mol), and mTOR (−6.7 kcal/mol), whereas BHA demonstrated the highest affinity toward PI3K (−6.8 kcal/mol) and Akt-1 (−6.5 kcal/mol). These interactions were supported by multiple hydrogen bonds, hydrophobic interactions, and van der Waals contacts.CONCLUSION: PG and BHA exhibited the highest binding affinity toward proteins of the EGFR–PI3K–Akt–mTOR associated with oral and gastrointestinal carcinogenesis. These computational findings provide a basis for future experimental studies to determine the biological relevance of the predicted protein–ligand interactions under long-term dietary exposure.KEYWORDS: synthetic food preservatives, molecular docking, oral carcinogenesis, gastrointestinal carcinogenesis