The Peter Attia Drive 09月25日 18:01
衰老研究与干预措施
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本期节目探讨了衰老的生物学机制,包括表观遗传学、代谢和免疫系统如何影响衰老过程。Eric Verdin博士讨论了免疫系统、神经系统功能障碍如何驱动全身性衰老,代谢变化如氧化应激、胰岛素和IGF-1信号通路的作用。他还介绍了实用工具如区域2有氧运动、生酮饮食和GLP-1药物,以及NAD水平下降与sirtuins、CD38等酶的关系。节目还分析了延长寿命的干预措施,如雷帕霉素、生长激素和抗炎疗法,并讨论了生物年龄测试的潜力和局限性。

🔬 衰老研究聚焦于表观遗传学、代谢和免疫系统如何相互作用影响生命进程,Eric Verdin博士强调了免疫系统功能下降(如胸腺萎缩、慢性炎症)和神经系统功能障碍如何加速全身性衰老。

🧬 代谢变化在衰老中起关键作用,特别是氧化应激、胰岛素和IGF-1信号通路,这些通路与能量代谢效率、线粒体功能及葡萄糖调节药物密切相关。

🍽️ 实用干预措施包括区域2有氧运动、生酮饮食和GLP-1药物,这些方法通过改善代谢健康和减少慢性炎症来延缓衰老,但需要超越粗略的BMI指标进行更精确的代谢健康评估。

🫀 免疫健康被视为第五大衰老驱动力,innate和adaptive免疫系统协同作用建立免疫记忆,而疫苗效力随年龄增长下降与胸腺萎缩和T细胞多样性减少直接相关。

🧬 NAD水平随年龄增长下降,sirtuins和CD38等酶消耗NAD,影响免疫功能和长寿,NMN和NR补充剂与CD38和NAD代谢相互作用,但需注意同型半胱氨酸升高和一碳循环耗竭等潜在风险。

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Eric Verdin is a physician-scientist and the CEO of the Buck Institute for Research on Aging whose career has centered on understanding how epigenetics, metabolism, and the immune system influence the aging process. In this episode, Eric traces his scientific journey from studying viruses and histone deacetylases (HDACs) to leading aging research at the Buck Institute, offering insights into how aging impairs immune and nervous system function—including thymic shrinkage, chronic inflammation, and reduced vaccine response—and how these changes impact lifespan. He explores the metabolic underpinnings of aging, such as oxidative stress and insulin and IGF-1 signaling, and he discusses practical tools like zone 2 cardio, ketogenic diets, and GLP-1 drugs. The conversation also covers declining NAD levels with age, the roles of NAD-consuming enzymes such as sirtuins and CD38, and what current NAD-boosting strategies (like NMN, NR, and IV NAD) can and can’t accomplish. Eric weighs in on promising longevity interventions including rapamycin, growth hormone for thymic regeneration, and anti-inflammatory therapies, while also examining the promise and limitations of current biological age tests and the potential of combining epigenetic, proteomic, and organ-specific metrics with wearables to guide personalized longevity care.

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衰老研究 免疫衰老 代谢健康 GLP-1药物 长寿干预
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