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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26330
Title: Deciphering the Regulatory Potential of Antioxidant and Electron-Shuttling Bioactive Compounds in Oolong Tea
Authors: Ferrer, Regineil A.
Chen, Bor-Yann
Garcia, Jon Patrick T.
Rejano, Christine Joyce F.
Tsai, Po-Wei 
Hsueh, Chung-Chuan
Tayo, Lemmuel L.
Keywords: Oolong tea;breast cancer;in vitro;flavonoids;antioxidant;electron shuttles;MFC;CV;in silico;network pharmacology;molecular docking;molecular dynamics
Issue Date: 2025
Publisher: MDPI
Journal Volume: 14
Journal Issue: 5
Source: BIOLOGY-BASEL
Abstract: 
OT has gained attention for its high polyphenol content and therapeutic potential. To elucidate this further, this study investigated the electron-shuttling bioactive compounds of OT and evaluated their effect on dysregulated breast cancer (BC) genes. OT extracts were obtained via solvent extraction (SE) and supercritical fluid extraction (SFE), followed by in vitro assays. Phytochemical analysis revealed that ethanol-extracted OT (OTL-E) had the highest polyphenol, flavonoid, and tannin contents, correlating with strong antioxidant activity, while water-extracted OT (OTL-W) exhibited greater bioelectricity-stimulating properties in microbial fuel cells (MFC), confirmed by cyclic voltammetry (CV). Based on phytochemical analyses, SE displayed a better extraction technique for isolating OT bioactive compounds compared to SFE. In silico approaches through network pharmacology, molecular docking and dynamics simulations revealed that polyphenols with ortho- or para-dihydroxyl groups targeted dysregulated BC proteins involved in kinase signaling, apoptosis, and hormone receptor pathways. Luteolin exhibited the highest binding affinities to MAPK1 and PIK3CA with free energy (Delta G) of -9.1 and -8.4 kcal/mol, respectively. Trajectory-based analyses confirmed enthalpy-favored ligand-induced conformational changes to these oncoproteins, altering their function in BC development. These findings suggest the potential of OT as a bioelectricity-stimulating and chemopreventive agent, warranting further in vitro and in vivo validation.
URI: http://scholars.ntou.edu.tw/handle/123456789/26330
DOI: 10.3390/biology14050487
Appears in Collections:食品科學系

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