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Influence of the Pituitary-Adrenal Axis on Benzodiazepine Receptor Binding to Rat Cerebral Cortex

 

作者: Dario Acuña,   Begoña Fernández,   Dolores Gomar,   Maria del Aguila,   Luis Castillo,  

 

期刊: Neuroendocrinology  (Karger Available online 1990)
卷期: Volume 51, issue 1  

页码: 97-103

 

ISSN:0028-3835

 

年代: 1990

 

DOI:10.1159/000125323

 

出版商: S. Karger AG

 

关键词: Benzodiazepine binding;Adrenal gland;Hypophysectomy;Corticosterone;Circadian rhythms

 

数据来源: Karger

 

摘要:

The role of the pituitary-adrenal axis on receptor binding and diurnal rhythmicity of benzodiazepines (BNZ) was assessed in the rat cerebral cortex. Groups of intact, adrenalectomized (ADx) and/or hypophysectomized (HPx) rats were killed at six different time intervals during the 24-hour cycle. BNZ binding was estimated by Scatchard analysis of 3H-flunitrazepam high-affinity binding to rat cerebral cortex. Intact and sham ADx animals show a similar pattern in diurnal thythm of BNZ binding, with a maximal concentration at midnight. Bilateral ADx induced a significant increase in Bmax at all time intervals studied, the largest rise appearing at midnight. HPx alone led to a slightly smaller rise in Bmax than in ADx rats, while HPx performed in ADx rats did not modify the response to ADx alone. Bmaχ of BNZ binding in ADx rats reached maximal values at 3–7 days after surgery, and decreased somewhat at 15 days post-ADx. Corticosterone administration at a single dose of 5 mg i.p. 24 h before sacrifice returned Bmax to normal values in ADx as well as in ADx plus HPx rats. The corticosterone effect is not exerted on the BNZ binding sites themselves, as revealed by the lack of effect of this glucocorticoid in vitro. These findings indicate that BNZ receptors in rat cerebral cortex can be modified by the adrenal gland, with corticosterone as a primary effect

 

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