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早期生活干预可以塑造衰老过程。

Early Life Interventions Can Shape Aging.

机构信息

Department of Internal Medicine, Southern Illinois University School of Medicine, Springfield, IL, United States.

Department of Biology, University of Alabama at Birmingham, Birmingham, AL, United States.

出版信息

Front Endocrinol (Lausanne). 2022 Feb 25;13:797581. doi: 10.3389/fendo.2022.797581. eCollection 2022.

Abstract

It is well documented that the environment of the developing fetus, including availability of nutrients and presence of toxins, can have major impact on adult phenotype, age-related traits and risk of chronic disease. There is also accumulating evidence that postnatal environment can impact adult characteristics related to evolutionary fitness, health, and aging. To determine whether early life hormonal interventions can alter trajectory of aging, we have examined the effects of early life growth hormone (GH) replacement therapy in Prop1 (Ames dwarf) mice which are GH deficient and remarkably long lived. Twice-daily GH injections between the ages of two and eight weeks completely normalized ("rescued") a number of adult metabolic characteristics believed to contribute to extended longevity of these mutants. Importantly, longevity of Ames dwarf mice was reduced by early life GH treatment. This was associated with histone H3 modifications. We conclude that the trajectory of mammalian aging can be modified by early life interventions. Mechanistic links among interventions during postnatal development, adult metabolic characteristics, aging, and longevity, apparently involve epigenetic phenomena.

摘要

有大量文献记载,胎儿发育的环境,包括营养物质的可获得性和毒素的存在,会对成年表型、与年龄相关的特征和慢性疾病的风险产生重大影响。越来越多的证据表明,产后环境会影响与进化适应性、健康和衰老相关的成年特征。为了确定早期生命的激素干预是否可以改变衰老的轨迹,我们研究了生长激素(GH)替代疗法在生长激素缺乏且寿命显著延长的 Prop1(Ames 矮)小鼠中的作用。在 2 至 8 周龄之间每天两次注射 GH 可完全纠正(“挽救”)许多被认为有助于这些突变体延长寿命的成年代谢特征。重要的是,早期生命的 GH 治疗会降低 Ames 矮小鼠的寿命。这与组蛋白 H3 修饰有关。我们得出结论,哺乳动物衰老的轨迹可以通过早期生命的干预来改变。产后发育过程中的干预措施、成年代谢特征、衰老和寿命之间的机制联系,显然涉及表观遗传现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a236/8916564/9c922cff7b2c/fendo-13-797581-g001.jpg

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