Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Brown Adipose Tissue: Function and Physiological Significance

View through CrossRef
Cannon, Barbara, and Jan Nedergaard. Brown Adipose Tissue: Function and Physiological Significance. Physiol Rev 84: 277–359, 2004; 10.1152/physrev.00015.2003.—The function of brown adipose tissue is to transfer energy from food into heat; physiologically, both the heat produced and the resulting decrease in metabolic efficiency can be of significance. Both the acute activity of the tissue, i.e., the heat production, and the recruitment process in the tissue (that results in a higher thermogenic capacity) are under the control of norepinephrine released from sympathetic nerves. In thermoregulatory thermogenesis, brown adipose tissue is essential for classical nonshivering thermogen-esis (this phenomenon does not exist in the absence of functional brown adipose tissue), as well as for the cold acclimation-recruited norepinephrine-induced thermogenesis. Heat production from brown adipose tissue is activated whenever the organism is in need of extra heat, e.g., postnatally, during entry into a febrile state, and during arousal from hibernation, and the rate of thermogenesis is centrally controlled via a pathway initiated in the hypothalamus. Feeding as such also results in activation of brown adipose tissue; a series of diets, apparently all characterized by being low in protein, result in a leptin-dependent recruitment of the tissue; this metaboloregulatory thermogenesis is also under hypothalamic control. When the tissue is active, high amounts of lipids and glucose are combusted in the tissue. The development of brown adipose tissue with its characteristic protein, uncoupling protein-1 (UCP1), was probably determinative for the evolutionary success of mammals, as its thermogenesis enhances neonatal survival and allows for active life even in cold surroundings.
Title: Brown Adipose Tissue: Function and Physiological Significance
Description:
Cannon, Barbara, and Jan Nedergaard.
Brown Adipose Tissue: Function and Physiological Significance.
Physiol Rev 84: 277–359, 2004; 10.
1152/physrev.
00015.
2003.
—The function of brown adipose tissue is to transfer energy from food into heat; physiologically, both the heat produced and the resulting decrease in metabolic efficiency can be of significance.
Both the acute activity of the tissue, i.
e.
, the heat production, and the recruitment process in the tissue (that results in a higher thermogenic capacity) are under the control of norepinephrine released from sympathetic nerves.
In thermoregulatory thermogenesis, brown adipose tissue is essential for classical nonshivering thermogen-esis (this phenomenon does not exist in the absence of functional brown adipose tissue), as well as for the cold acclimation-recruited norepinephrine-induced thermogenesis.
Heat production from brown adipose tissue is activated whenever the organism is in need of extra heat, e.
g.
, postnatally, during entry into a febrile state, and during arousal from hibernation, and the rate of thermogenesis is centrally controlled via a pathway initiated in the hypothalamus.
Feeding as such also results in activation of brown adipose tissue; a series of diets, apparently all characterized by being low in protein, result in a leptin-dependent recruitment of the tissue; this metaboloregulatory thermogenesis is also under hypothalamic control.
When the tissue is active, high amounts of lipids and glucose are combusted in the tissue.
The development of brown adipose tissue with its characteristic protein, uncoupling protein-1 (UCP1), was probably determinative for the evolutionary success of mammals, as its thermogenesis enhances neonatal survival and allows for active life even in cold surroundings.

Related Results

Exploring the Role of Visceral Fat as a Negative Regulator of Vascular Function In Obesity
Exploring the Role of Visceral Fat as a Negative Regulator of Vascular Function In Obesity
Background and Objective. Obesity promotes endothelial dysfunction, a major contributor to the development of cardiovascular disease. Work from our lab and others previously showed...
Morphological features of the innervation of the rat adrenal gland adipose tissue
Morphological features of the innervation of the rat adrenal gland adipose tissue
BACKGROUND: The relevance of studying adipose tissue is due to a lack of understanding of the etiology and pathogenesis of obesity and a lack of research into the endocrine functio...
Genetic background and diet affect brown adipose gene co-expression – metabolic associations
Genetic background and diet affect brown adipose gene co-expression – metabolic associations
Abstract Adipose is a dynamic endocrine organ that is critical for regulating metabolism and is highly responsive to nutritional environment. Bro...
227-OR: Disruption of Adipocyte YAP Improves Glucose Homeostasis in Mice and Decreases Adipose Tissue Fibrosis
227-OR: Disruption of Adipocyte YAP Improves Glucose Homeostasis in Mice and Decreases Adipose Tissue Fibrosis
Adipose tissue is a dynamic metabolic organ that is essential for the regulation of whole-body glucose homeostasis. Dysfunctional adipose tissue hypertrophy with obesity is associa...
1738-P: The Role of Adipocyte YAP in Glucose Homeostasis and Insulin Resistance In Vivo
1738-P: The Role of Adipocyte YAP in Glucose Homeostasis and Insulin Resistance In Vivo
Adipose tissue is a dynamic metabolic organ that is essential for the regulation of whole-body glucose homeostasis. Adipose tissue hypertrophy with obesity is associated with gluco...
A Novel Clinical-Grade Cryopreservation Solution for Adipose Tissue Based on Metformin
A Novel Clinical-Grade Cryopreservation Solution for Adipose Tissue Based on Metformin
Abstract Background Autologous fat grafting often needs multiple sessions due to low volume retention. Young adipose tissue demonstrates a more pronounced therapeutic effe...
Simulation of Acute Destructive Pancreatitis with Damage to the Adjacent Adipose Tissue in Pigs
Simulation of Acute Destructive Pancreatitis with Damage to the Adjacent Adipose Tissue in Pigs
The aim of the study was to develop a model of acute destructive pancreatitis with damage to the extra-organ adipose tissue. Materials and methods. Simulation of acute destructive ...
SUMMARY
SUMMARY
SUMMARYThe purpose of the present monograph is to give an account of the distribution of fibrinolytic components in the organism, with special reference to the tissue activator of ...

Back to Top