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一种保守的复杂脂质特征标志着人类肌肉衰老,并对短期运动有反应。

A conserved complex lipid signature marks human muscle aging and responds to short-term exercise.

机构信息

Laboratory Genetic Metabolic Diseases, Amsterdam UMC location, University of Amsterdam, Amsterdam, the Netherlands.

Amsterdam Gastroenterology, Endocrinology and Metabolism, Amsterdam, the Netherlands.

出版信息

Nat Aging. 2024 May;4(5):681-693. doi: 10.1038/s43587-024-00595-2. Epub 2024 Apr 12.

Abstract

Studies in preclinical models suggest that complex lipids, such as phospholipids, play a role in the regulation of longevity. However, identification of universally conserved complex lipid changes that occur during aging, and how these respond to interventions, is lacking. Here, to comprehensively map how complex lipids change during aging, we profiled ten tissues in young versus aged mice using a lipidomics platform. Strikingly, from >1,200 unique lipids, we found a tissue-wide accumulation of bis(monoacylglycero)phosphate (BMP) during mouse aging. To investigate translational value, we assessed muscle tissue of young and older people, and found a similar marked BMP accumulation in the human aging lipidome. Furthermore, we found that a healthy-aging intervention consisting of moderate-to-vigorous exercise was able to lower BMP levels in postmenopausal female research participants. Our work implicates complex lipid biology as central to aging, identifying a conserved aging lipid signature of BMP accumulation that is modifiable upon a short-term healthy-aging intervention.

摘要

研究表明,复杂脂质,如磷脂,在寿命调控中发挥作用。然而,目前尚不清楚在衰老过程中普遍存在的复杂脂质变化是什么,以及这些变化对干预的反应如何。在这里,为了全面描绘衰老过程中复杂脂质的变化,我们使用脂质组学平台对年轻和年老小鼠的十种组织进行了分析。惊人的是,在 >1200 种独特的脂质中,我们发现了小鼠衰老过程中双(单酰基甘油)磷酸(BMP)在组织中的广泛积累。为了研究其转化价值,我们评估了年轻人和老年人的肌肉组织,发现人类衰老脂质组中也存在类似的 BMP 显著积累。此外,我们发现,包括中等至剧烈运动的健康衰老干预措施能够降低绝经后女性研究参与者的 BMP 水平。我们的工作表明,复杂的脂质生物学是衰老的核心,确定了 BMP 积累的保守衰老脂质特征,这种特征可以通过短期的健康衰老干预来改变。

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