Cmah deficiency blunts cellular senescence in adipose tissues and improves whole‐body glucose metabolism in aged mice

Author:

Takeda Reo12ORCID,Tabuchi Ayaka1,Nonaka Yudai3,Kano Ryotaro12ORCID,Sudo Mizuki4,Kano Yutaka15,Hoshino Daisuke15

Affiliation:

1. Department of Engineering Science The University of Electro‐communications Tokyo Japan

2. Japan Society for the Promotion of Science Tokyo Japan

3. Institute of Liberal Arts and Sciences Kanazawa University Ishikawa Japan

4. Physical Fitness Research Institute, Meiji Yasuda Life Foundation of Health and Welfare Tokyo Japan

5. Center for Neuroscience and Biomedical Engineering University of Electro‐Communications Tokyo Japan

Abstract

AimCytidine monophosphate‐N‐acetylneuraminic acid (Neu5Ac) hydroxylase (Cmah) is an enzyme, which converts Neu5Ac to the sialic acid Neu5Gc. Neu5Gc is thought to increase inflammatory cytokines, which are, in part, produced in senescent cells of adipose tissues. Cellular senescence in adipose tissues induces whole‐body aging and impaired glucose metabolism. Therefore, we hypothesized that Cmah deficiency would prevent cellular senescence in adipose tissues and impaired glucose metabolism.MethodsWild‐type (WT) and Cmah knockout (KO) mice aged 24–25 months were used. Whole‐body metabolism was assessed using a metabolic gas analysis system. We measured blood glucose and insulin concentrations after oral glucose administration. The size of the lipid droplets in the liver was quantified. Markers of cellular senescence and senescence‐associated secretory phenotypes were measured in adipose tissues.ResultsCmah KO had significantly increased VO2 and energy expenditure (P < 0.01). Unlike glucose, the insulin concentration after oral glucose administration was significantly lower in the Cmah KO group than in the WT group (P < 0.001). Lipid droplets in the liver were significantly lower in the Cmah KO group than in the WT group (P < 0.05). The markers of cellular senescence and senescence‐associated secretory phenotypes in the adipose tissues were significantly lower in the Cmah KO group than in the WT group (P < 0.05).ConclusionsCmah deficiency blunted cellular senescence in adipose tissues and improved whole‐body glucose metabolism. These characteristics in aged Cmah KO mice might be associated with higher energy expenditure. Geriatr Gerontol Int 2023; 23: 958–964.

Funder

Japan Society for the Promotion of Science London

Publisher

Wiley

Subject

General Medicine

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