首页> 美国卫生研究院文献>The Journals of Gerontology Series A: Biological Sciences and Medical Sciences >Editors choice: 17α-Estradiol Alleviates Age-related Metabolic and Inflammatory Dysfunction in Male Mice Without Inducing Feminization
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Editors choice: 17α-Estradiol Alleviates Age-related Metabolic and Inflammatory Dysfunction in Male Mice Without Inducing Feminization

机译:编辑选择:17α-雌二醇可缓解雄性小鼠年龄相关的代谢和炎症功能障碍而不会引起女性化

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摘要

Aging is associated with visceral adiposity, metabolic disorders, and chronic low-grade inflammation. 17α-estradiol (17α-E2), a naturally occurring enantiomer of 17β-estradiol (17β-E2), extends life span in male mice through unresolved mechanisms. We tested whether 17α-E2 could alleviate age-related metabolic dysfunction and inflammation. 17α-E2 reduced body mass, visceral adiposity, and ectopic lipid deposition without decreasing lean mass. These declines were associated with reductions in energy intake due to the activation of hypothalamic anorexigenic pathways and direct effects of 17α-E2 on nutrient-sensing pathways in visceral adipose tissue. 17α-E2 did not alter energy expenditure or excretion. Fasting glucose, insulin, and glycosylated hemoglobin were also reduced by 17α-E2, and hyperinsulinemic-euglycemic clamps revealed improvements in peripheral glucose disposal and hepatic glucose production. Inflammatory mediators in visceral adipose tissue and the circulation were reduced by 17α-E2. 17α-E2 increased AMPKα and reduced mTOR complex 1 activity in visceral adipose tissue but not in liver or quadriceps muscle, which is in contrast to the generalized systemic effects of caloric restriction. These beneficial phenotypic changes occurred in the absence of feminization or cardiac dysfunction, two commonly observed deleterious effects of exogenous estrogen administration. Thus, 17α-E2 holds potential as a novel therapeutic for alleviating age-related metabolic dysfunction through tissue-specific effects.
机译:衰老与内脏脂肪,代谢紊乱和慢性低度炎症有关。 17α-雌二醇(17α-E2)是17β-雌二醇(17β-E2)的天然对映异构体,通过未解决的机制延长了雄性小鼠的寿命。我们测试了17α-E2是否可以缓解与年龄有关的代谢功能障碍和炎症。 17α-E2减少了体重,内脏脂肪和异位脂质沉积,而没有减少瘦体重。这些下降与下丘脑厌食生成途径的激活和内脏脂肪组织营养传感途径的17α-E2的直接作用所致的能量摄入减少有关。 17α-E2不会改变能量消耗或排泄。空腹血糖,胰岛素和糖基化血红蛋白也被17α-E2降低,高胰岛素-正常血糖钳夹显示外周葡萄糖处置和肝葡萄糖产生有所改善。内脏脂肪组织和循环中的炎性介质减少了17α-E2。 17α-E2增加内脏脂肪组织中的AMPKα并降低mTOR complex 1活性,但不影响肝脏或股四头肌,这与热量限制的全身性作用相反。这些有益的表型变化发生在没有女性化或心脏功能障碍的情况下,这是外源雌激素给药的两种常见的有害作用。因此,17α-E2作为通过组织特异性作用减轻与年龄有关的代谢功能障碍的新型疗法具有潜力。

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