Search results for "Urocortins"
showing 3 items of 3 documents
Do urocortins have a role in treating cardiovascular disease?
2018
Corticotropin-releasing factor (CRF) and the three homolog neuropeptides, urocortin (UCN) 1, 2 and 3, are the major neuroendocrine factors implicated in the response of the body to stress. Recent evidence suggests that UCNs have a significant role in the pathogenesis and management of cardiovascular disease, such as congestive heart failure, ischemic heart disease, and hypertension. These data led to the initiation of clinical trials testing a possible role of UCNs in the diagnosis and therapy of cardiovascular disease, with encouraging results. Here, we summarize the available literature concerning the role of UCNs in the cardiovascular system, focusing on the emerging data creating a pote…
Increased Anxiety-Like Behavior and Ethanol Self-Administration in Dependent Rats: Reversal via Corticotropin-Releasing Factor-2 Receptor Activation
2004
Background: Corticotropin-releasing factor (CRF) has been hypothesized to be one of the main regulators of the stress response observed during alcohol withdrawal. The CRF receptor subtypes seem to have a differential role in the regulation of stress-related behavior. Given the behavioral characterization of these receptors, the objective of the following experiments was to characterize the role of CRF2 receptors in the interaction between alcohol and stress by examining the effects of CRF2 receptor activation in the behavioral stress response and ethanol self-administration during early ethanol withdrawal in dependent rats. Methods: Male Wistar rats were made dependent on ethanol via chroni…
The corticotrophin-releasing factor/urocortin system regulates white fat browning in mice through paracrine mechanisms.
2015
Objectives:\ud The corticotrophin-releasing factor (CRF)/urocortin system is expressed in the adipose tissue of mammals, but its functional role in this tissue remains unknown.\ud \ud Methods:\ud Pharmacological manipulation of the activity of CRF receptors, CRF1 and CRF2, was performed in 3T3L1 white pre-adipocytes and T37i brown pre-adipocytes during in vitro differentiation. The expression of genes of the CRF/urocortin system and of markers of white and brown adipocytes was evaluated along with mitochondrial biogenesis and cellular oxygen consumption. Metabolic evaluation of corticosterone-deficient or supplemented Crhr1-null (Crhr1−/−) mice and their wild-type controls was performed alo…