Lee Hye-Yeon, Min Kyung-Jin
Department of Biological Sciences and Bioengineering, Inha University, Incheon 22212, Republic of Korea.
Nutrients. 2024 Dec 23;16(24):4424. doi: 10.3390/nu16244424.
Dietary restriction (DR) has been reported to be a significant intervention that influences lipid metabolism and potentially modulates the aging process in a wide range of organisms. Lipid metabolism plays a pivotal role in the regulation of aging and longevity. In this review, we summarize studies on the significant role of lipid metabolism in aging in relation to DR. As a potent intervention to slow down aging, DR has demonstrated promising effects on lipid metabolism, influencing the aging processes across various species. The current review focuses on the relationships among DR-related molecular signaling proteins such as the sirtuins, signaling pathways such as the target of rapamycin and the insulin/insulin-like growth factor (IGF)-1, lipid metabolism, and aging. Furthermore, the review presents research results on diet-associated changes in cell membrane lipids and alterations in lipid metabolism caused by commensal bacteria, highlighting the importance of lipid metabolism in aging. Overall, the review explores the interplay between diet, lipid metabolism, and aging, while presenting untapped areas for further understanding of the aging process.
据报道,饮食限制(DR)是一种重要的干预措施,它会影响脂质代谢,并可能在多种生物中调节衰老过程。脂质代谢在衰老和长寿的调节中起着关键作用。在这篇综述中,我们总结了关于脂质代谢在与饮食限制相关的衰老中的重要作用的研究。作为一种延缓衰老的有效干预措施,饮食限制已在脂质代谢方面展现出了有前景的效果,影响着各个物种的衰老过程。当前的综述聚焦于与饮食限制相关的分子信号蛋白(如沉默调节蛋白)、信号通路(如雷帕霉素靶蛋白和胰岛素/胰岛素样生长因子(IGF)-1)、脂质代谢和衰老之间的关系。此外,该综述还展示了关于饮食相关的细胞膜脂质变化以及共生细菌引起的脂质代谢改变的研究结果,突出了脂质代谢在衰老中的重要性。总体而言,该综述探讨了饮食、脂质代谢和衰老之间的相互作用,同时提出了有待进一步探索以深入理解衰老过程的领域。