Search results for "Brown adipose tissue"
showing 3 items of 13 documents
Adipose Tissue in Sleep Apnea
2015
Obesity is increasingly recognized as a very complex metabolic state. Besides visceral obesity and white adipose tissue (WAT) function, the most recent studies point to a major metabolic role of brown adipose tissue (BAT) in energy metabolism. Visceral obesity is associated with hypoxia of adipose tissue and inflammation, both these features being also present in patients with obstructive sleep apnea (OSA). Obesity and OSA may share some common pathogenetic mechanisms, since hypoxia and inflammation are major features of OSA as well. However, the unique pattern of intermittent hypoxia occurring in OSA patients during sleep may modify the response of WAT and BAT in both lean and obese subjec…
Postnatal Overfeeding in Rodents by Litter Size Reduction Induces Major Short- and Long-Term Pathophysiological Consequences
2013
Numerous studies have demonstrated that the early postnatal environment can influence body weight and energy homeostasis into adulthood. Rodents raised in small litters have been shown to be a useful experimental model to study the short- and long-term consequences of early overnutrition, which can lead to modifications not only in body weight but also of several metabolic features. Postnatal overfeeding (PNOF) induces early malprogramming of the hypothalamic system, inducing acquired persisting central leptin and insulin resistance and an increase in orexigenic signals. Visceral white adipose tissue, lipogenic activity, and inflammatory status are increased in PNOF rodents, while brown adi…
Relationships between adipose tissues and brain: what do we learn from animal studies?
2010
International audience; Over the last decades, more and more data supporting the importance of the relationships between the brain and adipose tissues (white and brown) in regards of body weight regulation and energy homeostasis have been published. Indeed the brain via the autonomic nervous system participates to the regulation of different parameters such as the metabolic (lipolysis, lipogenesis and thermogeneis), and secretory (leptin and other adipokines) activities but also plasticity (proliferation differentiation and apoptosis) of adipose tissues. In turn the various fat pads will send information via sensory innervation of white adipose tissue as well as metabolic and hormonal signa…