The Peter Attia Drive 07月21日 12:27
#357 ‒ A new era of longevity science: models of aging, human trials of rapamycin, biological clocks, promising compounds, and lifestyle interventions | Brian Kennedy, Ph.D.
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本期节目深入探讨了衰老这一复杂议题,邀请了著名生物学家Brian Kennedy。他分享了人体衰老研究的最新进展,包括雷帕霉素的临床试验及其剂量、时机和运动对结果的影响。文章批判了传统的衰老模型,提出了新的衰老模型,并强调了现有生物标志物的局限性,以及开发更实用生物钟的团队努力。此外,还讨论了α-酮酸、尿石素A和NAD增强剂等化合物的潜力,以及VO2 max训练、力量训练和GLP-1/SGLT2药物等生活方式干预对延长健康寿命的贡献。

💡 **衰老模型的新视角**:文章指出,传统的将衰老视为线性生物衰退的模型已不足以全面解释现象,并提出了两种新的模型:一种是线性的生物衰退累积,另一种是死亡风险的指数级上升。这表明衰老是一个多维度、非线性的过程,传统的单一模型无法涵盖其复杂性。

🚀 **雷帕霉素与mTOR信号通路**:文章强调了mTOR信号通路在衰老中的核心作用,并探讨了雷帕霉素作为一种潜在的延缓衰老、增强免疫力的药物。Brian Kennedy团队正在进行相关的临床试验,研究其剂量策略、时机以及与运动结合的效果,以期优化其在人类衰老干预中的应用。

🔬 **生物标志物与生物钟的局限与发展**:现有的大多数衰老生物标志物因缺乏临床实用性而被认为不足。文章介绍了Kennedy团队正在致力于开发更具可操作性的生物钟,以更准确地评估个体的生物学年龄,从而为更精准的预防性衰老护理提供支持。

🍎 **营养素与生活方式干预的潜力**:文章探讨了α-酮酸、尿石素A和NAD增强剂等化合物在改善线粒体健康、减少衰弱和延缓衰老方面的潜力。同时,也强调了VO2 max训练、力量训练以及GLP-1和SGLT2药物等生活方式干预在延长健康寿命中的重要作用,并指出肌肉、力量和体能是健康寿命的最强预测因子。

⚖️ **平衡长寿与健康寿命**:文章在追求“不朽”的愿景与改善晚年健康状态的迫切需求之间寻求平衡,并对四种主要慢性病的必然性和可干预性进行了比较。同时,也警示了过度叠加多种长寿干预措施可能带来的反效果,强调了科学、安全地进行干预的重要性。

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Brian Kennedy is a renowned biologist, leader in aging research, and director of the Center for Healthy Longevity at the National University of Singapore. In this episode, Brian shares insights from ongoing human aging studies, including clinical trials of rapamycin and how dosing strategies, timing, and exercise may influence outcomes. He presents two key models of aging—one as a linear accumulation of biological decline and the other as an exponential rise in mortality risk—and explains why traditional models of aging fall short. He also explains why most current aging biomarkers lack clinical utility and describes how his team is working to develop a more actionable biological clock. Additional topics include the potential of compounds like alpha-ketoglutarate, urolithin A, and NAD boosters, along with how lifestyle interventions—such as VO2 max training, strength building, and the use of GLP-1 and SGLT2 drugs—may contribute to longer, healthier lives.

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衰老研究 生物学 长寿 雷帕霉素 健康寿命
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