cover of episode #312 - A masterclass in lactate: Its critical role as metabolic fuel, implications for diseases, and therapeutic potential from cancer to brain health and beyond | George A. Brooks, Ph.D.

#312 - A masterclass in lactate: Its critical role as metabolic fuel, implications for diseases, and therapeutic potential from cancer to brain health and beyond | George A. Brooks, Ph.D.

2024/8/5
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George Brooks: 本期节目讨论了乳酸在能量代谢中的关键作用,以及其在各种疾病(包括癌症和脑损伤)中的治疗潜力。Brooks教授阐述了乳酸与乳酸的区分,回顾了历史上的误解,并解释了乳酸作为大脑和肌肉燃料的作用。他还探讨了优秀运动员的代谢差异,以及训练如何影响乳酸通量和利用率。此外,Brooks教授还揭示了乳酸在2型糖尿病、癌症和脑损伤中的重要性,并强调了其治疗潜力。讨论内容涵盖了从新陈代谢基础到乳酸在基因表达和治疗应用中的最新研究。 Peter Attia: Attia医生与Brooks教授深入探讨了乳酸的各个方面,包括乳酸和乳酸的区分,历史视角,以及乳酸作为大脑和肌肉燃料的作用。他们探讨了优秀运动员的代谢差异,以及训练如何影响乳酸通量和利用率。此外,他们还探讨了乳酸在2型糖尿病、癌症和脑损伤中的作用,以及乳酸的治疗潜力。讨论内容涵盖了从新陈代谢基础到乳酸在基因表达和治疗应用中的最新研究,以及一些关于乳酸作用的未解之谜。

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George A. Brooks is a renowned professor of integrative biology at UC Berkeley. Known for his groundbreaking "lactate shuttle" theory proposed in the 1980s, George revolutionized our understanding of lactate as a crucial fuel source rather than just a byproduct of exercise. In this episode, George clarifies common misconceptions between lactate and lactic acid, delves into historical perspectives, and explains how lactate serves as a fuel for the brain and muscles. He explores the metabolic differences in exceptional athletes and how training impacts lactate flux and utilization. Furthermore, George reveals the significance of lactate in type 2 diabetes, cancer, and brain injuries, highlighting its therapeutic potential. This in-depth conversation discusses everything from the fundamentals of metabolism to the latest research on lactate's role in gene expression and therapeutic applications.

We discuss:

  • Our historical understanding of lactate and muscle metabolism: early misconceptions and key discoveries [3:30];
  • Fundamentals of metabolism: how glucose is metabolized to produce ATP and fuel our bodies [16:15];
  • The critical role of lactate in energy production within muscles [24:00];
  • Lactate as a preferred fuel during high-energy demands: impact on fat oxidation, implications for type 2 diabetes, and more [30:45];
  • How the infusion of lactate could aid recovery from traumatic brain injuries (TBI) [43:00];
  • The effects of exercise-induced lactate [49:30];
  • Metabolic differences between highly-trained athletes and insulin-resistant individuals [52:00];
  • How training enhances lactate utilization and facilitates lactate shuttling between fast-twitch and slow-twitch muscle fibers [58:45];
  • The growing recognition of lactate and monocarboxylate transporters (MCT) [1:06:00];
  • The intricate pathways of lactate metabolism: isotope tracer studies, how exceptional athletes are able to utilize more lactate, and more [1:09:00];
  • The role of lactate in cancer [1:23:15];
  • The role of lactate in the pathophysiology of various diseases, and how exercise could mitigate lactate's carcinogenic effects and support brain health [1:29:45];
  • George’s current research interests involving lactate [1:37:00];
  • Questions that remain about lactate: role in gene expression, therapeutic potential, difference between endogenous and exogenous lactate, and more [1:50:45]; and
  • More.

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