首页> 美国卫生研究院文献>Aging Cell >17‐α estradiol ameliorates age‐associated sarcopenia and improves late‐life physical function in male mice but not in females or castrated males
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17‐α estradiol ameliorates age‐associated sarcopenia and improves late‐life physical function in male mice but not in females or castrated males

机译:17-α雌二醇可改善与年龄相关的肌肉减少症并改善雄性小鼠的晚期身体机能但不改善雌性或or割的雄性小鼠

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摘要

Pharmacological treatments can extend mouse lifespan, but lifespan effects often differ between sexes. 17‐α estradiol (17aE2), a less feminizing structural isomer of 17‐β estradiol, produces lifespan extension only in male mice, suggesting a sexually dimorphic mechanism of lifespan regulation. We tested whether these anti‐aging effects extend to anatomical and functional aging—important in late‐life health—and whether gonadally derived hormones control aging responses to 17aE2 in either sex. While 17aE2 started at 4 months of age diminishes body weight in both sexes during adulthood, in late‐life 17aE2‐treated mice better maintain body weight. In 17aE2‐treated male mice, the higher body weight is associated with heavier skeletal muscles and larger muscle fibers compared with untreated mice during aging, while treated females have heavier subcutaneous fat. Maintenance of skeletal muscle in male mice is associated with improved grip strength and rotarod capacity at 25 months, in addition to higher levels of most amino acids in quadriceps muscle. We further show that sex‐specific responses to 17aE2—metabolomic, structural, and functional—are regulated by gonadal hormones in male mice. Castrated males have heavier quadriceps than intact males at 25 months, but do not respond to 17aE2, suggesting 17aE2 promotes an anti‐aging skeletal muscle phenotype similar to castration. Finally, 17aE2 treatment benefits can be recapitulated in mice when treatment is started at 16 months, suggesting that 17aE2 may be able to improve aspects of late‐life function even when started after middle age.
机译:药理学治疗可以延长小鼠的寿命,但是寿命的效果在男女之间通常有所不同。 17-α雌二醇(17aE2)是一种17-β雌二醇的女性化程度较低的结构异构体,仅在雄性小鼠中产生寿命延长,提示其寿命调控的性二态机制。我们测试了这些抗衰老作用是否扩展至解剖学和功能性衰老(这对晚年健康至关重要),以及性腺衍生的激素是否可控制男女中对17aE2的衰老反应。虽然17aE2从4个月大开始就在成年期降低了男女的体重,但在后期使用17aE2治疗的小鼠中却可以更好地保持体重。在17aE2处理的雄性小鼠中,与未治疗的小鼠相比,较高的体重与较重的骨骼肌和较大的肌纤维有关,而经治疗的雌性则具有较重的皮下脂肪。雄性小鼠骨骼肌的维持与25个月时抓地力和轮转能力的提高有关,此外四头肌中大多数氨基酸的含量更高。我们进一步表明,雄性小鼠的性腺激素调节对17aE2的性别特异性反应(代谢,结构和功能)。在25个月时,割的男性比完整男性的四头肌重,但对17aE2没有反应,表明17aE2促进了类似于cast割的抗衰老骨骼肌表型。最后,当在16个月开始治疗时,可以在小鼠中概括17aE2的治疗益处,这表明17aE2甚至可以在中年以后开始时也可以改善晚年功能的各个方面。

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