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外源性酮酯对衰老C57BL/6J雄性小鼠骨骼肌的多组学影响

Effects of an exogenous ketone ester using multi-omics in skeletal muscle of aging C57BL/6J male mice.

作者信息

Roberts Brandon M, Deemer Sarah E, Smith Daniel L, Mobley James A, Musi Nicolas, Plaisance Eric P

机构信息

Department of Human Studies, Division of Molecular and Translational Biomedicine, University of Alabama at Birmingham, Birmingham, AL, United States.

Department of Kinesiology, Health Promotion, and Recreation, University of North Texas, Denton, TX, United States.

出版信息

Front Nutr. 2022 Nov 15;9:1041026. doi: 10.3389/fnut.2022.1041026. eCollection 2022.

Abstract

Exogenous ketone ester supplementation provides a means to increase circulating ketone concentrations without the dietary challenges imposed by ketogenic diets. Our group has shown that oral R,S-1,3, butanediol diacetoacetate (BD-AcAc) consumption results in body weight loss or maintenance with moderate increases in circulating ketones. We have previously shown a diet consisting of 25% BD-AcAc can maintain lean body mass (LBM) and induce fat mass (FM) loss in young, healthy male mice, but the underlying mechanisms are still unknown. Therefore, the purpose of this study was to determine if a diet consisting of 25% BD-AcAc (ketone ester, KE) would alter body composition, transcriptional regulation, the proteome, and the lipidome of skeletal muscle in aged mice. We hypothesized that the KE group would remain weight stable with improvements in body composition compared to controls, resulting in a healthy aging phenotype. Male C57BL/6J mice ( = 16) were purchased from Jackson Laboratories at 72 weeks of age. After 1 week of acclimation, mice were weighed and randomly assigned to one of two groups ( = 8 per group): control (CON) or KE. A significant group by time interaction was observed for body weight ( < 0.001), with KE fed mice weighing significantly less than CON. FM increased over time in the control group but was unchanged in the KE group. Furthermore, LBM was not different between CON and KE mice despite KE mice weighing less than CON mice. Transcriptional analysis of skeletal muscle identified 6 genes that were significantly higher and 21 genes that were significantly lower in the KE group compared to CON. Lipidomic analysis of skeletal muscle identified no differences between groups for any lipid species, except for fatty acyl chains in triacylglycerol which was 46% lower in the KE group. Proteomics analysis identified 44 proteins that were different between groups, of which 11 were lower and 33 were higher in the KE group compared to CON. In conclusion, 72-week-old male mice consuming the exogenous KE, BD-AcAc, had lower age-related gains in body weight and FM compared to CON mice. Furthermore, transcriptional and proteomics data suggest a signature in skeletal muscle of KE-treated mice consistent with markers of improved skeletal muscle regeneration, improved electron transport chain utilization, and increased insulin sensitivity.

摘要

外源性酮酯补充剂提供了一种增加循环酮浓度的方法,而无需生酮饮食所带来的饮食挑战。我们的研究小组已经表明,口服R,S-1,3-丁二醇二乙酰乙酸酯(BD-AcAc)会导致体重减轻或维持不变,同时循环酮水平适度增加。我们之前已经表明,由25%BD-AcAc组成的饮食可以维持年轻健康雄性小鼠的瘦体重(LBM)并诱导脂肪量(FM)减少,但其潜在机制仍然未知。因此,本研究的目的是确定由25%BD-AcAc(酮酯,KE)组成的饮食是否会改变老年小鼠骨骼肌的身体成分、转录调控、蛋白质组和脂质组。我们假设与对照组相比,KE组体重将保持稳定,身体成分得到改善,从而产生健康的衰老表型。雄性C57BL/6J小鼠(n = 16)在72周龄时从杰克逊实验室购买。适应1周后,对小鼠进行称重,并随机分为两组(每组n = 8):对照组(CON)或KE组。观察到体重存在显著的组间与时间交互作用(P < 0.001),喂食KE的小鼠体重显著低于CON组。对照组的FM随时间增加,但KE组没有变化。此外,尽管KE组小鼠体重低于CON组小鼠,但CON组和KE组小鼠的LBM没有差异。骨骼肌的转录分析确定,与CON组相比,KE组中有6个基因显著上调,21个基因显著下调。骨骼肌的脂质组分析确定,除了三酰甘油中的脂肪酰链在KE组中降低了46%外,各脂质种类在组间没有差异。蛋白质组学分析确定了44种在组间存在差异的蛋白质,其中与CON组相比,KE组中有11种蛋白质含量较低,33种蛋白质含量较高。总之,与CON组小鼠相比,如果72周龄雄性小鼠食用外源性KE(BD-AcAc),与年龄相关的体重和FM增加会更低。此外,转录和蛋白质组学数据表明,KE处理小鼠的骨骼肌存在一种特征,与骨骼肌再生改善、电子传递链利用改善和胰岛素敏感性增加的标志物一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b600/9707703/37f860b65d93/fnut-09-1041026-g001.jpg

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