Obesity and associated metabolic diseases have become a priority area of study due to the exponential increase in their prevalence and the corresponding health and economic impact. In the last decade, brown adipose tissue has become an attractive target to treat obesity. However, environmental variables such as temperature and the dynamics of energy expenditure could influence brown adipose tissue activity. Currently, most metabolic studies are carried out at a room temperature of 21 °C, which is considered a thermoneutral zone for adult humans. However, in mice this chronic cold temperature triggers an increase in their adaptive thermogenesis. In this review, we aim to cover important aspects related to the adaptation of animals to room temperature, the influence of housing and temperature on the development of metabolic phenotypes in experimental mice and their translation to human physiology. Mice studies performed in chronic cold or thermoneutral conditions allow us to better understand underlying physiological mechanisms for successful, reproducible translation into humans in the fight against obesity and metabolic diseases.

译文

肥胖和相关的代谢疾病已成为研究的优先领域,因为它们的患病率呈指数级增长以及相应的健康和经济影响。在过去的十年中,棕色脂肪组织已成为治疗肥胖症的诱人靶标。然而,环境变量 (例如温度和能量消耗的动态变化) 可能会影响棕色脂肪组织的活性。目前,大多数代谢研究都是在21 °C的室温下进行的,这被认为是成年人的热中性区域。然而,在小鼠中,这种慢性低温会触发其适应性产热的增加。在这篇综述中,我们旨在涵盖与动物适应室温,住房和温度对实验小鼠代谢表型发展的影响及其转化为人类生理学有关的重要方面。在慢性感冒或热中性条件下进行的小鼠研究使我们能够更好地了解潜在的生理机制,从而成功地,可重复地转化为人类,以对抗肥胖和代谢疾病。

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