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乳酸代谢清除率和代谢询问的乳酸钳夹概念:综述。

Concepts of Lactate Metabolic Clearance Rate and Lactate Clamp for Metabolic Inquiry: A Mini-Review.

机构信息

Department of Kinesiology, Saint Mary's College of California, Moraga, CA 94575, USA.

Laboratoire Interuniversitaire de Biologie de la Motricité, Université Savoie Mont Blanc, F-73000 Chambéry, France.

出版信息

Nutrients. 2023 Jul 20;15(14):3213. doi: 10.3390/nu15143213.

Abstract

Lactate is known to play a central role in the link between glycolytic and mitochondrial oxidative metabolism, as well as to serve as a primary gluconeogenic precursor. Blood lactate concentration is sensitive to the metabolic state of tissues and organs as lactate rates of appearance and disposal/disappearance in the circulation rise and fall in response to physical exercise and other metabolic disturbances. The highest lactate flux rates have been measured during moderate intensity exercise in endurance-trained individuals who exhibit muscular and metabolic adaptations lending to superior oxidative capacity. In contrast, a diminished ability to utilize lactate is associated with poor metabolic fitness. Given these widespread implications in exercise performance and health, we discuss the concept of lactate metabolic clearance rate, which increases at the onset of exercise and, unlike flux rates, reaches a peak just below the power output associated with the maximal lactate steady state. The metabolic clearance rate is determined by both disposal rate and blood concentration, two parameters that are mutually interdependent and thus difficult to parse during steady state exercise studies. We review the evolution of the in vivo lactate clamp methodology to control blood lactate concentration and discuss its application in the investigation of whole-body lactate disposal capacities. In conclusion, we assert that the lactate clamp is a useful research methodology for examining lactate flux, in particular the factors that drive metabolic clearance rate.

摘要

乳酸在糖酵解和线粒体氧化代谢之间的联系中起着核心作用,并且是主要的糖异生前体。血液乳酸浓度对组织和器官的代谢状态敏感,因为在循环中出现和处置/消失的乳酸速率会随着体育锻炼和其他代谢紊乱而上升和下降。在耐力训练个体进行中等强度运动期间,已经测量到最高的乳酸通量率,这些个体表现出肌肉和代谢适应,从而具有更高的氧化能力。相比之下,乳酸利用率降低与代谢健康状况不佳有关。鉴于乳酸在运动表现和健康方面的广泛影响,我们讨论了乳酸代谢清除率的概念,该概念在运动开始时增加,与通量率不同,它在达到与最大乳酸稳态相关的最大功率输出以下的峰值。代谢清除率取决于处置率和血液浓度,这两个参数相互依存,因此在稳态运动研究中难以解析。我们回顾了体内乳酸钳夹方法来控制血液乳酸浓度的演变,并讨论了其在研究全身乳酸处置能力中的应用。总之,我们断言乳酸钳夹是一种有用的研究方法,可用于检查乳酸通量,特别是驱动代谢清除率的因素。

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