Institute of Neuroscience, University Miguel Hernández (UMH)-CSIC, Alicante, Spain.
Department of Physiology, CIMUS, University of Santiago de Compostela, Santiago de Compostela, Spain.
Front Endocrinol (Lausanne). 2023 Mar 8;14:1093376. doi: 10.3389/fendo.2023.1093376. eCollection 2023.
Thermal homeostasis is a fundamental process in mammals, which allows the maintenance of a constant internal body temperature to ensure an efficient function of cells despite changes in ambient temperature. Increasing evidence has revealed the great impact of thermoregulation on energy homeostasis. Homeothermy requires a fine regulation of food intake, heat production, conservation and dissipation and energy expenditure. A great interest on this field of research has re-emerged following the discovery of thermogenic brown adipose tissue and browning of white fat in adult humans, with a potential clinical relevance on obesity and metabolic comorbidities. However, most of our knowledge comes from male animal models or men, which introduces unwanted biases on the findings. In this review, we discuss how differences in sex-dependent characteristics (anthropometry, body composition, hormonal regulation, and other sexual factors) influence numerous aspects of thermal regulation, which impact on energy homeostasis. Individuals of both sexes should be used in the experimental paradigms, considering the ovarian cycles and sexual hormonal regulation as influential factors in these studies. Only by collecting data in both sexes on molecular, functional, and clinical aspects, we will be able to establish in a rigorous way the real impact of thermoregulation on energy homeostasis, opening new avenues in the understanding and treatment of obesity and metabolic associated diseases.
体温平衡是哺乳动物的基本过程,它允许维持恒定的内部体温,以确保细胞在环境温度变化时仍能有效运作。越来越多的证据表明,体温调节对能量平衡有很大的影响。恒温动物需要精细地调节食物摄入、产热、保存和散热以及能量消耗。随着人们发现成年人体内的棕色脂肪组织和白色脂肪的褐色化,这一研究领域重新引起了人们的兴趣,这对肥胖和代谢合并症具有潜在的临床意义。然而,我们的大多数知识来自雄性动物模型或男性,这给研究结果带来了不必要的偏见。在这篇综述中,我们讨论了性别相关特征(人体测量学、身体成分、激素调节和其他性因素)如何影响热调节的众多方面,从而影响能量平衡。在实验范式中应该使用两性个体,考虑到卵巢周期和性荷尔蒙调节是这些研究中的影响因素。只有通过在两性个体中收集分子、功能和临床方面的数据,我们才能严格地确定体温调节对能量平衡的真正影响,为肥胖和代谢相关疾病的理解和治疗开辟新的途径。