Homeotherms have specific mechanisms to maintain a constant core body temperature despite changes in thermal environment, food supply, and metabolic demand. Brown adipose tissue, the principal thermogenic organ, quickly and efficiently increases heat production by dissipating the mitochondrial proton motive force. It has been suggested that activation of brown fat, via either environmental (i.e. cold exposure) or pharmacologic means, could be used to increase metabolic rate and thus reduce body weight. Here we assess the effects of intermittent cold exposure (4°C for one to eight hours three times a week) on C57BL/6J mice fed a high fat diet. Cold exposure increased metabolic rate approximately two-fold during the challenge and activated br...
Ambient temperature affects energy intake and expenditure to maintain homeostasis in a continuously ...
ACKNOWLEDGMENTS This work was partly supported by grants (31670417 and 31870388 to Z.J.Z., and 92057...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
Homeotherms have specific mechanisms to maintain a constant core body temperature despite changes in...
Brown adipose tissue (BAT) is the most essential thermogenic organ in homeotherms. In mice, brown ad...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
Obesity and associated metabolic diseases have become a priority area of study due to the exponentia...
Cold exposure has been shown to affect metabolic activity and adipose tissue. Therefore we aimed to ...
In rodents, brown adipose tissue (BAT) regulates cold-and diet-induced thermogenesis (CIT; DIT). Whe...
The rise in obesity over the last several decades has reached pandemic proportions. Brown adipose ti...
SummaryAmbient temperature affects energy intake and expenditure to maintain homeostasis in a contin...
AbstractThe recent characterization of brown fat in humans has generated much excitement on the poss...
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...
Ambient temperature affects energy intake and expenditure to maintain homeostasis in a continuously ...
ACKNOWLEDGMENTS This work was partly supported by grants (31670417 and 31870388 to Z.J.Z., and 92057...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...
Homeotherms have specific mechanisms to maintain a constant core body temperature despite changes in...
Brown adipose tissue (BAT) is the most essential thermogenic organ in homeotherms. In mice, brown ad...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
Obesity and associated metabolic diseases have become a priority area of study due to the exponentia...
Cold exposure has been shown to affect metabolic activity and adipose tissue. Therefore we aimed to ...
In rodents, brown adipose tissue (BAT) regulates cold-and diet-induced thermogenesis (CIT; DIT). Whe...
The rise in obesity over the last several decades has reached pandemic proportions. Brown adipose ti...
SummaryAmbient temperature affects energy intake and expenditure to maintain homeostasis in a contin...
AbstractThe recent characterization of brown fat in humans has generated much excitement on the poss...
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...
Ambient temperature affects energy intake and expenditure to maintain homeostasis in a continuously ...
ACKNOWLEDGMENTS This work was partly supported by grants (31670417 and 31870388 to Z.J.Z., and 92057...
Brown adipose tissue (BAT) has attracted scientific interest as an antidiabetic tissue owing to its ...