Although visceral adipocytes located within the body's central core are maintained at approximately 37°C, adipocytes within bone marrow, subcutaneous, and dermal depots are found primarily within the peripheral shell and generally exist at cooler temperatures. Responses of brown and beige/brite adipocytes to cold stress are well studied; however, comparatively little is known about mechanisms by which white adipocytes adapt to temperatures below 37°C. Here, we report that adaptation of cultured adipocytes to 31°C, the temperature at which distal marrow adipose tissues and subcutaneous adipose tissues often reside, increases anabolic and catabolic lipid metabolism, and elevates oxygen consumption. Cool adipocytes rely less on glucose and mor...
Conversion of white into brown adipose tissue may have important implications in obesity resistan...
Brown adipocytes dissipate energy, whereas white adipocytes are an energy storage site. We explored ...
Summary: Thermogenic fat expends energy during cold for temperature homeostasis, and its activity re...
Human skin temperature can vary widely depending on anatomical location and ambient temperature. It ...
Since the discovery of brown adipose tissue (BAT), emerging strategies to promote its activation and...
Ambient temperature affects energy intake and expenditure to maintain homeostasis in a continuously ...
SummaryAmbient temperature affects energy intake and expenditure to maintain homeostasis in a contin...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
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...
The prevalence of obesity and type 2 diabetes has become a major economic and medical burden worldwi...
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...
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...
Conversion of white into brown adipose tissue may have important implications in obesity resistan...
Brown adipocytes dissipate energy, whereas white adipocytes are an energy storage site. We explored ...
Summary: Thermogenic fat expends energy during cold for temperature homeostasis, and its activity re...
Human skin temperature can vary widely depending on anatomical location and ambient temperature. It ...
Since the discovery of brown adipose tissue (BAT), emerging strategies to promote its activation and...
Ambient temperature affects energy intake and expenditure to maintain homeostasis in a continuously ...
SummaryAmbient temperature affects energy intake and expenditure to maintain homeostasis in a contin...
Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a...
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...
The prevalence of obesity and type 2 diabetes has become a major economic and medical burden worldwi...
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...
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...
Conversion of white into brown adipose tissue may have important implications in obesity resistan...
Brown adipocytes dissipate energy, whereas white adipocytes are an energy storage site. We explored ...
Summary: Thermogenic fat expends energy during cold for temperature homeostasis, and its activity re...