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Intermittent cold exposure enhances fat accumulation in mice.


ABSTRACT: Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a key player in energy metabolism. Cold exposure is a physiological activator of BAT. Intermittent cold exposure (ICE), unlike persistent exposure, is clinically feasible. The main objective of this study was to investigate whether ICE reduces adiposity in C57BL/6 mice. Surprisingly, we found that ICE actually increased adiposity despite enhancing Ucp1 expression in BAT and inducing beige adipocytes in subcutaneous white adipose tissue. ICE did not alter basal systemic insulin sensitivity, but it increased liver triglyceride content and secretion rate as well as blood triglyceride levels. Gene profiling further demonstrated that ICE, despite suppressing lipogenic gene expression in white adipose tissue and liver during cold exposure, enhanced lipogenesis between the exposure periods. Together, our results indicate that despite enhancing BAT recruitment, ICE in mice increases fat accumulation by stimulating de novo lipogenesis.

SUBMITTER: Yoo HS 

PROVIDER: S-EPMC4008632 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Intermittent cold exposure enhances fat accumulation in mice.

Yoo Hyung Sun HS   Qiao Liping L   Bosco Chris C   Leong Lok-Hei LH   Lytle Nikki N   Feng Gen-Sheng GS   Chi Nai-Wen NW   Shao Jianhua J  

PloS one 20140502 5


Due to its high energy consuming characteristics, brown adipose tissue (BAT) has been suggested as a key player in energy metabolism. Cold exposure is a physiological activator of BAT. Intermittent cold exposure (ICE), unlike persistent exposure, is clinically feasible. The main objective of this study was to investigate whether ICE reduces adiposity in C57BL/6 mice. Surprisingly, we found that ICE actually increased adiposity despite enhancing Ucp1 expression in BAT and inducing beige adipocyte  ...[more]

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