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 ...
SummaryWe investigated the metabolism of human brown adipose tissue (BAT) in healthy subjects by det...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
This dissertation studied the effects of cold acclimation on slim and overweight/obese test subjects...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Recruitment of brown adipose tissue (BAT) has emerged as a potential tool to combat obesity and asso...
Cold exposure provides a reproducible model of improved glucose turnover accompanied by reduced stea...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
The insulin signaling pathway is critical for the control of blood glucose levels. Brown adipose tis...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
SummaryWe investigated the metabolism of human brown adipose tissue (BAT) in healthy subjects by det...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
This dissertation studied the effects of cold acclimation on slim and overweight/obese test subjects...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose ho...
Recruitment of brown adipose tissue (BAT) has emerged as a potential tool to combat obesity and asso...
Cold exposure provides a reproducible model of improved glucose turnover accompanied by reduced stea...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
The insulin signaling pathway is critical for the control of blood glucose levels. Brown adipose tis...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
SummaryWe investigated the metabolism of human brown adipose tissue (BAT) in healthy subjects by det...
Muscle glycogen use and glucose uptake during cold exposure increases with shivering intensity. We h...
This dissertation studied the effects of cold acclimation on slim and overweight/obese test subjects...