Advanced paternal age increased metabolic risks in mice offspring

The Developmental Origins of Health and Disease Science indicate that chronic diseases in adulthood are associated with prenatal and early-life traits. Our study aimed to explore the metabolic phenotype of offspring from advanced paternal age (APA) and the inherited alterations in sperm. 3-month-old...

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Veröffentlicht in:Biochimica et biophysica acta. Molecular basis of disease 2022-05, Vol.1868 (5), p.166355-166355, Article 166355
Hauptverfasser: Mao, Yiting, Zhao, Yiran, Luo, Sisi, Chen, Huixi, Liu, Xia, Wu, Ting, Ding, Guolian, Liu, Xinmei, Sheng, Jianzhong, Meng, Yicong, Huang, Hefeng
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Sprache:eng
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Zusammenfassung:The Developmental Origins of Health and Disease Science indicate that chronic diseases in adulthood are associated with prenatal and early-life traits. Our study aimed to explore the metabolic phenotype of offspring from advanced paternal age (APA) and the inherited alterations in sperm. 3-month-old (Young father, YF-F0) and 21-month-old male (Old Father, OF-F0) C57BL/6J mice were used to study paternal aging's effect on offspring. Blood glucose testing, lipid analysis, indirect calorimetry and RNA sequencing were performed. The characterized metabolic changes in OF-F1 male mice offspring were glucose intolerance, hepatic lipid accumulation, increased adipocytes and impaired energy balance that lasted until they were elderly. Gene expression in both 8-week-old and 52-week-old offspring livers significantly altered in lipid metabolism- and thermogenesis-related pathways. PPAR signaling pathway was activated in both young and elderly offspring livers as indicated by significant upregulation of Cyp7a1, Cyp8b1, Cyp4a10, Cyp4a31, Fabp2, and Scd1. These targeted genes were also confirmed to be increased in offspring adipocytes. Furthermore, when examined the differentially expressed genes in F0 and F1 sperm, upregulated pathways including cholesterol metabolism, type II diabetes mellitus and endocrine resistance were strongly related to the APA offspring phenotype. Importantly, approximately 46.7% of enriched pathways in the sperm of APA offspring were consistent with those of APA fathers. These findings added evidence of the connection between paternal gametes and alterations in progeny genome and raised the possibility that inherited alterations in sperm contribute to the intergenerational effects of paternal aging offspring's chronic metabolic risks. •Advanced paternal age (APA) was associated with increased metabolic risks of offspring.•Glucose intolerance, lipid accumulation and impaired energy balance were identified in old father offspring mice.•Pathways regulating lipid metabolism and energy balance were significantly altered in offspring livers.•In F0 and F1 sperm, cholesterol metabolism, type II diabetes mellitus and endocrine resistance pathways were up regulated.
ISSN:0925-4439
1879-260X
DOI:10.1016/j.bbadis.2022.166355