首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >A Long-lived Mouse Lacking Both Growth Hormone and Growth Hormone Receptor: A New Animal Model for Aging Studies
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A Long-lived Mouse Lacking Both Growth Hormone and Growth Hormone Receptor: A New Animal Model for Aging Studies

机译:缺乏生长激素和生长激素受体的长期小鼠:一种用于老化研究的新动物模型

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摘要

Disruption of the growth hormone (GH) signaling pathway promotes insulin sensitivity and is associated with both delayed aging and extended longevity. Two kinds of long-lived mice-Ames dwarfs (df/df) and GH receptor gene-disrupted knockouts (GHRKO) are characterized by a suppressed GH axis with a significant reduction of body size and decreased plasma insulin-like growth factor-1 (IGF-1) and insulin levels. Ames dwarf mice are deficient in GH, prolactin, and thyrotropin, whereas GHRKOs are GH resistant and are dwarf with decreased circulating IGF-1 and increased GH. Crossing Ames dwarfs and GHRKOs produced a new mouse line (df/KO), lacking both GH and GH receptor. These mice are characterized by improved glucose tolerance and increased adiponectin level, which could imply that these mice should be also characterized by additional life-span extension when comparing with GHRKOs and Ames dwarfs. Importantly, our longevity experiments showed that df/KO mice maintain extended longevity when comparing with N control mice; however, they do not live longer than GHRKO and Ames df/df mice. These important findings indicate that silencing GH signal is important to extend the life span; however, further decrease of body size in mice with already inhibited GH signal does not extend the life span regardless of improved some health-span markers.
机译:生长激素(GH)信号传导途径的破坏促进胰岛素敏感性,并且与延迟老化和延长的寿命相关。两种长寿命的小鼠嗜虫(DF / DF)和GH受体基因破坏的敲除(GHRKO)的特征在于抑制的GH轴,具有显着降低体尺寸和降低的血浆胰岛素样生长因子-1( IGF-1)和胰岛素水平。 AMES侏儒小鼠在GH,催乳素和旋脂蛋白中缺乏缺乏,而GHRKO是GH的抗性,并且是循环IGF-1和增加GH的肺炎。穿越Ames Dwarfs和Ghrkos生产了一种新的鼠标线(DF / KO),缺乏GH和GH受体。这些小鼠的特征在于改善葡萄糖耐受性和增加的脂联素水平,这暗示这些小鼠的特征还应在与GHRKOS和AMES DWARF进行比较时的额外寿命延伸。重要的是,我们的寿命实验表明,与N对照小鼠相比,DF / KO小鼠保持延长的寿命;然而,它们不会长于ghrko和ames df / df小鼠。这些重要研究结果表明,沉默GH信号延长寿命是重要的;然而,具有已经禁止的GH信号的小鼠中体尺寸的进一步减少不会延长寿命,而不管某些健康跨度标记。

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