Park Ji Ho, Lee Yun Haeng, Lee Kyeong Seon, Lee Yoo Jin, Yoon Jee Hee, So Byeonghyeon, Kim Duyeol, Kim Minseon, Kwon Hyung Wook, Byun Youngjoo, Lee Ki Yong, Park Joon Tae
Division of Life Sciences, College of Life Sciences and Bioengineering, Incheon National University, Incheon 22012, Republic of Korea.
College of Pharmacy, Korea University, Sejong 30019, Republic of Korea.
Pharmaceuticals (Basel). 2025 Aug 24;18(9):1254. doi: 10.3390/ph18091254.
: Reactive oxygen species (ROS) generated due to mitochondrial dysfunction are one of the primary causes of the initiation and progression of senescence. Although reducing mitochondrial ROS production is known as an effective strategy for the treatment of aging, effective components that reduce mitochondrial ROS production or effective treatments that utilize them have not yet been developed. : Screening of plant-generated secondary metabolites to overcome ROS-mediated stress found that ε-viniferin, a dimer of resveratrol, effectively reduces mitochondrial ROS production. : ε-viniferin induced efficient electron transport and reduced mitochondrial ROS, a consequence of inefficient electron transport. In addition, ε-viniferin acted as a senolytic that selectively eliminates senescent fibroblasts, thereby restoring mitochondrial function and senescence-associated phenotypes. RNA sequencing analysis revealed that () was an important gene for ε-viniferin-mediated senescence rejuvenation. Upregulation of showed similar effects as ε-viniferin in reducing mitochondrial ROS production and restoring mitochondrial function. : This study discovered a novel mechanism by which ε-viniferin rejuvenates senescence by lowering ROS production in mitochondria. The novel mechanism will serve as a basis for developing therapeutics that regulate mitochondrial ROS production to treat aging.
线粒体功能障碍产生的活性氧(ROS)是衰老起始和进展的主要原因之一。尽管减少线粒体ROS生成是治疗衰老的有效策略,但尚未开发出能减少线粒体ROS生成的有效成分或利用这些成分的有效疗法。通过筛选植物产生的次生代谢产物以克服ROS介导的应激发现,白藜芦醇二聚体ε-葡萄素能有效减少线粒体ROS生成。ε-葡萄素诱导了有效的电子传递并减少了线粒体ROS,而线粒体ROS是电子传递效率低下的结果。此外,ε-葡萄素作为一种衰老细胞裂解剂,能选择性地清除衰老的成纤维细胞,从而恢复线粒体功能和衰老相关表型。RNA测序分析表明,(此处原文缺失具体基因信息)是ε-葡萄素介导的衰老恢复的重要基因。该基因的上调在减少线粒体ROS生成和恢复线粒体功能方面显示出与ε-葡萄素相似的效果。本研究发现了一种新机制,即ε-葡萄素通过降低线粒体中的ROS生成来恢复衰老。这一新机制将为开发调节线粒体ROS生成以治疗衰老的疗法奠定基础。