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二甲双胍治疗幼年小鼠以依赖于性别和不依赖于性别的方式改变与衰老相关的发育和代谢表型。

Metformin treatment of juvenile mice alters aging-related developmental and metabolic phenotypes in sex-dependent and sex-independent manners.

机构信息

Department of Internal Medicine, Southern Illinois University School of Medicine, 801 N. Rutledge, P.O. Box 19628, Springfield, IL, 62702, USA.

Department of Physiology, Southern Illinois University SIU School of Medicine, 1135 Lincoln Drive, Life Science III, Room 2062, Carbondale, IL, 62901, USA.

出版信息

Geroscience. 2024 Jun;46(3):3197-3218. doi: 10.1007/s11357-024-01067-6. Epub 2024 Jan 16.

Abstract

Metformin has attracted increasing interest for its potential benefits in extending healthspan and longevity. This study examined the effects of early-life metformin treatment on the development and metabolism of C57BL/6 J (B6) mice, with metformin administered to juvenile mice from 15 to 56 days of age. Metformin treatment led to decreased body weight in both sexes (P < 0.05, t-test). At 9 weeks of age, mice were euthanized and organ weights were recorded. The relative weight of retroperitoneal fat was decreased in females, while relative weights of perigonadal and retroperitoneal fat were decreased, and relative liver weight was increased in males (P < 0.05, t-test). Glucose and insulin tolerance tests (GTT and ITT) were conducted at the age of 7 weeks. ANOVA revealed a significant impairment in insulin sensitivity by the treatment, and a significantly interactive effect on glucose tolerance between sex and treatment, underscoring a disparity in GTT between sexes in response to the treatment. Metformin treatment reduced circulating insulin levels in fasting and non-fasting conditions for male mice, with no significant alterations observed in female mice. qRT-PCR analysis of glucose metabolism-related genes (Akt2, Glut2, Glut4, Irs1, Nrip1, Pi3k, Pi3kca, Pkca) in the liver and skeletal muscle reveals metformin-induced sex- and organ-specific effects on gene expression. Comparison with previous studies in heterogeneous UM-HET3 mice receiving the same treatment suggests that genetic differences may contribute to variability in the effects of metformin treatment on development and metabolism. These findings indicate that early-life metformin treatment affects development and metabolism in both sex- and genetics-dependent manners.

摘要

二甲双胍因其在延长健康寿命方面的潜在益处而引起了越来越多的关注。本研究探讨了早期生命阶段二甲双胍治疗对 C57BL/6J(B6)小鼠发育和代谢的影响,在 15 至 56 日龄时向幼年小鼠给予二甲双胍。二甲双胍治疗导致雌雄两性的体重均减轻(P<0.05,t 检验)。在 9 周龄时,处死小鼠并记录器官重量。雌性小鼠的腹膜后脂肪相对重量降低,而雄性小鼠的性腺周和腹膜后脂肪相对重量降低,肝相对重量增加(P<0.05,t 检验)。在 7 周龄时进行葡萄糖和胰岛素耐量试验(GTT 和 ITT)。ANOVA 显示,治疗对胰岛素敏感性有显著的损害,并且性别和治疗对葡萄糖耐量有显著的交互作用,这突出了治疗对雌雄两性 GTT 的影响存在差异。二甲双胍治疗降低了雄性小鼠空腹和非空腹状态下的循环胰岛素水平,而对雌性小鼠没有显著影响。对肝脏和骨骼肌中与葡萄糖代谢相关的基因(Akt2、Glut2、Glut4、Irs1、Nrip1、Pi3k、Pi3kca、Pkca)进行 qRT-PCR 分析显示,二甲双胍诱导了基因表达的性别和器官特异性效应。与接受相同治疗的异质 UM-HET3 小鼠的先前研究进行比较表明,遗传差异可能导致二甲双胍治疗对发育和代谢的影响存在可变性。这些发现表明,早期生命阶段二甲双胍治疗以性别和遗传依赖的方式影响发育和代谢。

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