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温度依赖性代谢物对急性次最大运动的调控表明人类的心肺适能。

Temperature-dependent metabolite orchestration to acute submaximal exercise indicates cardiorespiratory fitness in humans.

作者信息

Hu Yang, Zheng Yao, Wang Yongchun, Yu Sen, Li Min, Zhou Jiaheng, Wu Guiling, Xing Wenjuan, Dong Ling, Liu Yang, Fang Guoliang, Li Jia, Zhao Jiexiu, Zhang Xing, Gao Feng

机构信息

Key Laboratory of Aerospace Medicine of Ministry of Education, School of Aerospace Medicine, Fourth Military Medical University, Xi'an 710032, China.

School of Biomedical Engineering, Fourth Military Medical University, Xi'an 710032, China.

出版信息

Life Sci. 2023 Jan 15;313:121284. doi: 10.1016/j.lfs.2022.121284. Epub 2022 Dec 16.

Abstract

AIMS

Cardiorespiratory fitness (CRF), an important biomarker of human health, is impaired in cold environment compared to thermoneutral condition. The study aimed to investigate the role of metabolome response to acute exercise in regulation of CRF at different ambient temperatures.

MAIN METHODS

A total of 27 young adults were recruited, and each subject underwent a cardiopulmonary exercise test (CPET) and a constant load submaximal exercise at both room temperature (25 °C) and cold temperature (0 °C). The serum samples were collected before and immediately after constant load exercise.

KEY FINDINGS

Acute cold exposure decreased CRF by 41 %, accompanied by a metabolic shift to anaerobic respiration. It also decreased VO and increased respiratory quotient during constant load exercise. Metabolome profiling revealed that acute exercise reprogrammed serum metabolome in an ambient temperature-dependent manner. Specifically, exercise increased a cluster of fatty acids during cold exposure, possibly due to impaired fatty acid oxidation. The correlations between metabolite responses to acute exercise and exercise parameters were analyzed using partial least squares regression and machine learning, revealing that metabolite responses to acute exercise were highly correlated with exercise parameters and predictive of CRF. Among the contributors, tryptophan and its metabolites stood out as important ones.

SIGNIFICANCE

These results suggested that the metabolite responses to acute submaximal exercise unmasks the exercise performance at different ambient temperatures, highlighting the role of metabolite orchestration in the physiological regulation of CRF.

摘要

目的

心肺适能(CRF)是人类健康的重要生物标志物,与热中性条件相比,在寒冷环境中会受到损害。本研究旨在探讨代谢组对急性运动的反应在不同环境温度下对CRF调节中的作用。

主要方法

共招募了27名年轻成年人,每位受试者在室温和低温(0°C)下均进行了心肺运动试验(CPET)和恒定负荷次最大运动。在恒定负荷运动前和运动后立即采集血清样本。

主要发现

急性冷暴露使CRF降低了41%,同时伴随着代谢向无氧呼吸的转变。在恒定负荷运动期间,它还降低了摄氧量并增加了呼吸商。代谢组分析表明,急性运动以环境温度依赖的方式对血清代谢组进行了重编程。具体而言,在冷暴露期间运动增加了一组脂肪酸,这可能是由于脂肪酸氧化受损所致。使用偏最小二乘回归和机器学习分析了代谢物对急性运动的反应与运动参数之间的相关性,结果表明代谢物对急性运动的反应与运动参数高度相关且可预测CRF。在这些影响因素中,色氨酸及其代谢物尤为突出。

意义

这些结果表明,代谢物对急性次最大运动的反应揭示了不同环境温度下的运动表现,突出了代谢物调控在CRF生理调节中的作用。

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