Protective Effect of Physalis alkekengi Extract on MGO-Induced Nonenzymatic Glycation Fibroblasts via ECM-Integrin
Fan Yi1,2,3, Ying-Ying Lin1,2,3, Jia Yan4
1Beijing Key Laboratory of Plant Resources Research and Development, Beijing Technology and Business University, Beijing 100048, China.
Abstract:
Advanced glycation end products (AGEs) and their precursor methylglyoxal (MGO) promote skin aging by disrupting the cellular mechano-environment. This study investigated whether Physalis alkekengi water extract (PAE) could protect this mechanical network and inhibit AGEs' formation. Among 12 regional samples, PAE from Hami, Xinjiang, most potently inhibited carboxymethyllysine formation. In MGO-damaged cells, this optimal PAE restored cellular stiffness, preserved F-actin structure, and increased secretion of type I collagen and elastin. It upregulated TGF-β1, suppressed MMP-2/9, and enhanced integrin β1-mediated mechanotransduction, thereby elevating key extracellular matrix (ECM) proteins (elastin, fibronectin, laminin-5) and rescuing impaired cell migration and adhesion. We conclude that PAE counteracts skin aging by simultaneously inhibiting glycation and protecting the ECM-cell mechanical network, supporting its potential in functional foods and skincare.
