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为了通量:运动期间监测人体碳水化合物代谢的同位素示踪方法。

For Flux Sake: Isotopic Tracer Methods of Monitoring Human Carbohydrate Metabolism During Exercise.

作者信息

Gonzalez Javier T, King Andy J

机构信息

Center for Nutrition, Exercise and Metabolism, University of Bath, Bath,United Kingdom.

Department for Health, University of Bath, Bath,United Kingdom.

出版信息

Int J Sport Nutr Exerc Metab. 2022 Nov 29;33(1):60-70. doi: 10.1123/ijsnem.2022-0170. Print 2023 Jan 1.

Abstract

Isotopic tracers can reveal insights into the temporal nature of metabolism and track the fate of ingested substrates. A common use of tracers is to assess aspects of human carbohydrate metabolism during exercise under various established models. The dilution model is used alongside intravenous infusion of tracers to assess carbohydrate appearance and disappearance rates in the circulation, which can be further delineated into exogenous and endogenous sources. The incorporation model can be used to estimate exogenous carbohydrate oxidation rates. Combining methods can provide insight into key factors regulating health and performance, such as muscle and liver glycogen utilization, and the underlying regulation of blood glucose homeostasis before, during, and after exercise. Obtaining accurate, quantifiable data from tracers, however, requires careful consideration of key methodological principles. These include appropriate standardization of pretrial diet, specific tracer choice, whether a background trial is necessary to correct expired breath CO2 enrichments, and if so, what the appropriate background trial should consist of. Researchers must also consider the intensity and pattern of exercise, and the type, amount, and frequency of feeding (if any). The rationale for these considerations is discussed, along with an experimental design checklist and equation list which aims to assist researchers in performing high-quality research on carbohydrate metabolism during exercise using isotopic tracer methods.

摘要

同位素示踪剂可以揭示新陈代谢的时间特性,并追踪摄入底物的去向。示踪剂的一个常见用途是在各种既定模型下评估运动期间人体碳水化合物代谢的各个方面。稀释模型与示踪剂的静脉输注一起使用,以评估循环中碳水化合物的出现和消失速率,这可以进一步细分为外源性和内源性来源。掺入模型可用于估计外源性碳水化合物氧化速率。结合多种方法可以深入了解调节健康和运动表现的关键因素,例如肌肉和肝脏糖原的利用情况,以及运动前、运动中和运动后血糖稳态的潜在调节机制。然而,要从示踪剂中获得准确、可量化的数据,需要仔细考虑关键的方法学原则。这些原则包括对试验前饮食进行适当标准化、选择特定的示踪剂、是否需要进行背景试验以校正呼出气体中二氧化碳的富集情况,如果需要,合适的背景试验应包括哪些内容。研究人员还必须考虑运动的强度和模式,以及进食的类型、数量和频率(如果有)。本文讨论了这些考虑因素的基本原理,同时还提供了一份实验设计清单和方程式清单,旨在帮助研究人员使用同位素示踪剂方法对运动期间的碳水化合物代谢进行高质量的研究。

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