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◆ Biochemical and biophysical research communications2026-09-08

Repeated pyrocatechol exposure induces persistent oxidative stress resistance associated with Nrf2 activation in HepG2 cells.

Sachie Nakatani, Iori Adachi, Misuzu Saito, Mina Otsuka, Kenji Kobata

原始摘要(英文原文)· Original abstract
Cells adapt to oxidative stress by activating inducible antioxidant defense systems, among which the Nrf2 signaling pathway plays a central role. Pyrocatechol, a phenolic compound generated during coffee roasting, has been reported to activate Nrf2 signaling; however, whether repeated exposure to pyrocatechol induces a persistent adaptive cytoprotective response to oxidative stress in hepatic cells remains unclear. In this study, we examined whether repeated daily exposure to pyrocatechol enhances resistance to subsequent oxidative stress in HepG2 cells. Repeated pyrocatechol treatment for 6 days promoted Nrf2 nuclear translocation together with increased HO-1 expression and enhanced resistance to subsequent H2O2-induced oxidative stress. In short-term experiments, brusatol suppressed HO-1 induction and attenuated the cytoprotective effect of a single pyrocatechol treatment, supporting the involvement of Nrf2 signaling. Notably, enhanced resistance to H2O2 persisted after pyrocatechol removal and cell reseeding, indicating that repeated pyrocatechol exposure induces a persistent adaptive cytoprotective response in HepG2 cells.
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Repeated pyrocatechol exposure induces persistent oxidative stress resistance associated with Nrf2 activation in HepG2 cells. — 科研速览 Science Skim