Physiological and molecular mechanisms of cold-induced improvements in glucose homeostasis in humans beyond brown adipose tissue

被引:0
作者
Sten van Beek
Dzhansel Hashim
Tore Bengtsson
Joris Hoeks
机构
[1] Maastricht University,Department of Nutrition and Movement Sciences, NUTRIM School of Nutrition and Translational Research in Metabolism
[2] Stockholm University,Department of Molecular Biosciences, The Wenner
来源
International Journal of Obesity | 2023年 / 47卷
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摘要
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose homeostasis in both rodents and humans. Although the brown adipose tissue is key in mediating these beneficial effects in rodents, its contribution appears more limited in humans. Hence, the exact tissues and underlying mechanisms that mediate cold-induced improvements in glucose homeostasis in humans remain to be fully established. In this review, we evaluated the response of the main organs involved in glucose metabolism (i.e. pancreas, liver, (white) adipose tissue, and skeletal muscle) to cold exposure and discuss their potential contribution to cold-induced improvements in glucose homeostasis in humans. We here show that cold exposure has widespread effects on metabolic organs involved in glucose regulation. Nevertheless, cold-induced improvements in glucose homeostasis appear primarily mediated via adaptations within the skeletal muscle and (presumably) white adipose tissue. Since the underlying mechanisms remain elusive, future studies should be aimed at pinpointing the exact physiological and molecular mechanisms involved in humans. Nonetheless, cold exposure holds great promise as a novel, additive lifestyle approach to improve glucose homeostasis in insulin resistant individuals.
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页码:338 / 347
页数:9
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[1]  
Dulloo AG(1988)Sympathetic nervous system responses to cold exposure and diet in rat skeletal muscle Am J Physiol 255 E180-8
[2]  
Young JB(1978)Levels of noradrenaline in plasma during thermogenesis induced by cold-exposure or by noradrenaline infusion in warm- and in cold-acclimated rats Experientia Suppl 32 135-46
[3]  
Landsberg L(1981)Plasma catecholamines in rats exposed to cold: effects of ganglionic and adrenoreceptor blockade Eur J Pharmacol 69 321-9
[4]  
Depocas F(2011)Central efferent pathways for cold-defensive and febrile shivering J Physiol 589 3641-58
[5]  
Behrens WA(2017)Shivering thermogenesis in humans: origin, contribution and metabolic requirement Temperature 4 217-26
[6]  
Picotti GB(2011)Implications of nonshivering thermogenesis for energy balance regulation in humans Am J Physiol Regul Integr Comp Physiol 301 R285-96
[7]  
Carruba MO(1983)Interactions of cold exposure and starvation on glucose tolerance and insulin response Am J Physiol 245 E575-81
[8]  
Ravazzani C(1982)Shivering thermogenesis and glucose uptake by muscles of normal or diabetic rats Am J Physiol 242 R109-15
[9]  
Cesura AM(1984)Insulin response in rats acutely exposed to cold Can J Physiol Pharmacol 62 924-7
[10]  
Galva MD(1987)Cold exposure potentiates the effect of insulin on in vivo glucose uptake Am J Physiol 253 E179-86