In vitro study using rat H9C2 cardiomyocytes treated with H₂O₂ to induce oxidative stress, demonstrating that MOTS-c pretreatment at doses of 10–50 µM dose-dependently attenuates oxidative cell death and inflammatory marker expression through concurrent Nrf2/ARE pathway activation and NF-κB pathway inhibition, identifying dual antioxidant and anti-inflammatory cardiac protection. Characterizes MOTS-c's molecular mechanisms in cardiomyocyte oxidative stress. Establishes that MOTS-c simultaneously activates antioxidant gene expression via Nrf2/ARE while suppressing inflammatory NF-κB signaling in cardiomyocytes—explaining at the molecular level how a single mitochondrial peptide achieves dual cardioprotection against the oxidative stress and inflammation that underlie most cardiac injuries.
Shen, Caijie; Wang, Jian; Feng, Mingjun; Peng, Jianye; Du, Xiangfeng; Chu, Huimin; Chen, Xiaomin