Gille Benedikt, Galuska Christina E, Fuchs Beate, Peleg Shahaf
Research Group Epigenetics, Metabolism and Longevity, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany.
Core Facility Metabolomics, Research Institute for Farm Animal Biology (FBN), Dummerstorf, Germany.
Front Aging. 2021 Nov 19;2:773795. doi: 10.3389/fragi.2021.773795. eCollection 2021.
Lipids are involved in a broad spectrum of canonical biological functions, from energy supply and storage by triacylglycerols to membrane formation by sphingolipids, phospholipids and glycolipids. Because of this wide range of functions, there is an overlap between age-associated processes and lipid pathways. Lipidome analysis revealed age-related changes in the lipid composition of various tissues in mice and humans, which were also influenced by diet and gender. Some changes in the lipid profile can be linked to the onset of age-related neurodegenerative diseases like Alzheimer's disease. Furthermore, the excessive accumulation of lipid storage organelles, lipid droplets, has significant implications for the development of inflammaging and non-communicable age-related diseases. Dietary interventions such as caloric restriction, time-restrictive eating, and lipid supplementation have been shown to improve pertinent health metrics or even extend life span and thus modulate aging processes.
脂质参与广泛的典型生物学功能,从三酰甘油的能量供应和储存到鞘脂、磷脂和糖脂的膜形成。由于功能范围广泛,与年龄相关的过程和脂质途径之间存在重叠。脂质组分析揭示了小鼠和人类各种组织脂质组成的年龄相关变化,这些变化也受饮食和性别的影响。脂质谱的一些变化可能与阿尔茨海默病等与年龄相关的神经退行性疾病的发病有关。此外,脂质储存细胞器脂滴的过度积累对炎症衰老和非传染性年龄相关疾病的发展具有重要影响。热量限制、限时进食和脂质补充等饮食干预已被证明可改善相关健康指标,甚至延长寿命,从而调节衰老过程。