Jia Du, Qinghua Liu, Zhongxiao Wan, Naomi Sudo, Yanyang Xu
Given the increasing focus on natural interventions for healthy aging, this research evaluates the longevity-promoting potential of egg-derived peptides (EPs) extracted from American shad (Alosa sapidissima). Using Caenorhabditis elegans as the experimental model, researchers found that 0.15 mg/mL EP supplementation extended lifespan by a remarkable 33.33%. EP also significantly enhanced healthspan, improving physiological metrics such as head thrashing, body bending, and pharyngeal pumping by 24.37%, 22.33%, and 28.81%, respectively. Furthermore, EP reduced aging biomarkers-including lipofuscin and reactive oxygen species (ROS)-by up to 40.34%, while boosting overall antioxidant capacity (SOD increased by 53%, MDA decreased by 30.76%). Transcriptomic analysis identified 2196 differentially expressed genes (DEGs) out of 23 057 total identified genes, providing deep insights into the mechanisms underlying EP-mediated longevity. Crucially, EP upregulated genes responsible for unsaturated fatty acid biosynthesis (fat-7 and elo-4) to optimize cell membrane fluidity. Conversely, it downregulated genes linked to fatty acid β-oxidation (acs-2, acox-1.5, ech-9, hacd-1) and endogenous stress responses (sod-3, hsp-16.1, hsf-1). Validated via qRT-PCR, these shifts indicate that EP extends lifespan by fundamentally remodeling lipid metabolism and maintaining redox homeostasis. Ultimately, these findings highlight EP as a highly promising functional food ingredient for promoting healthy aging.