Conversion of white into brown adipose tissue may have important implications in obesity resistance and treatment. Several browning agents or conditions ignite thermogenesis in white adipose tissue (WAT). To reveal the capacity of WAT to function in a brownish/burning mode over the long term, we investigated the progression of the rat retroperitoneal WAT (rpWAT) browning during 45days of cold acclimation. During the early stages of cold acclimation, the majority of rpWAT adipocytes underwent multilocularization and thermogenic-profile induction, as demonstrated by the presence of a multitude of uncoupling protein 1 (UCP1)-immunopositive paucilocular adipocytes containing peroxisome proliferator-activated recept...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...
Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipose tissue, a...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...
Cold exposure or β3-adrenoceptor agonist treatment induces the adipose tissues remodeling, relevant ...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Continuous exposure to cold leads to activation of adaptive thermogenesis in brown adipose tissue bu...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Continuous exposure to cold leads to activation of adaptive thermogenesis in brown adipose tissue bu...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Increasing adaptive thermogenesis by stimulating browning in white adipose tissue is a pr...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...
Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipose tissue, a...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...
Cold exposure or β3-adrenoceptor agonist treatment induces the adipose tissues remodeling, relevant ...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Continuous exposure to cold leads to activation of adaptive thermogenesis in brown adipose tissue bu...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Continuous exposure to cold leads to activation of adaptive thermogenesis in brown adipose tissue bu...
Objective: Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipos...
Objective: Increasing adaptive thermogenesis by stimulating browning in white adipose tissue is a pr...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...
Chronic cold exposure causes white adipose tissue (WAT) to adopt features of brown adipose tissue, a...
Brown and beige adipocytes are characterised as expressing the unique mitochondrial uncoupling prote...