Jiangsu Engineering Research Center of Cardiovascular Drugs Targeting Endothelial Cells, College of Health Sciences, School of Life Sciences, Jiangsu Normal University, Xuzhou 221116, Jiangsu, China; School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150090, Heilongjiang, PR China.
School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150090, Heilongjiang, PR China.
J Dairy Sci. 2024 Jan;107(1):9-23. doi: 10.3168/jds.2023-23637. Epub 2023 Sep 9.
Milk fat globule epidermal growth factor 8 (MFG-E8) and whey protein have emerged as promising bionutrient supplements for enhancing skeletal muscle mass and function. In the present study, aging-related sarcopenia rat model was employed to elucidate the effects of the combined administration of MFG-E8 and whey protein on the catabolism and anabolism of gastrocnemius protein. Combined intervention led to notable enhancements in the antioxidative stress status and mitochondrial biogenesis capacity of gastrocnemius muscle fibers in the aging rats, concomitant with a significant inhibition of lipid accumulation. Moreover, the synergistic effect of MFG-E8 and whey protein was found to exert modulatory effects on key signaling pathways, including PI3K/Akt/PGC-1α pathway and MAPK/ERK signaling pathways in the gastrocnemius muscle of the aging rats. Specifically, this combined intervention was observed to promote mitochondrial biogenesis and regulate the expression of protein anabolism and catabolism-related regulators, thereby facilitating the alleviation of mitochondrial oxidative stress and enhancing biogenesis in gastrocnemius tissues. The findings of our study provide compelling evidence for the potential of MFG-E8 as a promising dietary supplement with antisarcopenic properties to ameliorate muscle protein metabolism disorders and mitigate mitochondrial-mediated myoblast apoptosis induced by oxidative stress.
牛奶脂肪球表皮生长因子 8(MFG-E8)和乳清蛋白已成为增强骨骼肌质量和功能的有前途的生物营养素补充剂。在本研究中,采用与年龄相关的骨骼肌减少症大鼠模型来阐明 MFG-E8 和乳清蛋白联合给药对腓肠肌蛋白分解和合成的影响。联合干预可显著增强衰老大鼠腓肠肌纤维的抗氧化应激状态和线粒体生物发生能力,同时显著抑制脂质积累。此外,还发现 MFG-E8 和乳清蛋白的协同作用对关键信号通路具有调节作用,包括衰老大鼠腓肠肌中的 PI3K/Akt/PGC-1α通路和 MAPK/ERK 信号通路。具体而言,这种联合干预被观察到可促进线粒体生物发生并调节蛋白质合成和分解代谢相关调节剂的表达,从而缓解线粒体氧化应激并增强腓肠肌组织的生物发生。本研究的结果为 MFG-E8 作为一种有前途的具有抗骨骼肌减少特性的膳食补充剂提供了有力证据,可改善肌肉蛋白质代谢紊乱并减轻氧化应激诱导的成肌细胞凋亡。