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首页> 外文期刊>Peptides: An International Journal >Regulation of the rat brain endothelin system by endogenous beta-endorphin.
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Regulation of the rat brain endothelin system by endogenous beta-endorphin.

机译:内源性β-内啡肽对大鼠脑内皮素系统的调节。

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Several lines of evidence indicate that the central endogenous opioid and endothelin (ET) system regulate each other. To explore this idea further, we determined the effect of intracerebroventricular (i.c.v.) administration of anti-beta-endorphin IgG (rabbit) on the expression level of the opioid, corticotropin-releasing hormone and endothelin receptors, and tissue concentration of ET-1. Three days after implanting cannula into the lateral ventricle, male Sprague-Dawley rats were administered 10 microl (i.c.v.) of either control rabbit IgG (2.5 microg/microl) or anti-beta-endorphin IgG (2.5 microg/microl) on days 1, 3 and 5. On day 6, animals were euthanized and caudate, cortex and hippocampus collected for Western blot analysis. Anti-beta-endorphin IgG down-regulated ET-A receptor protein expression in the caudate (51%), but had no effect on the expression of mu, delta, kappa opioid, ET-B, CRH-1 and CRH-2 receptors in any brain region. Anti-beta-endorphin IgG increased tissue ET-1 levels in the caudate by 30.3%. [35S]GTP-gamma-S binding assays demonstrated that anti-beta-endorphin IgG increased the efficacy of [D-Ala2-MePhe4, Gly-ol5]enkephalin without altering its potency in caudate. Control experiments showed that there was no detectable rabbit IgG in caudate, cortex and hippocampus samples. These results suggest that beta-endorphin in the CSF coordinately regulates ET-1 levels and the ET-A receptor in rat caudate. These findings support the hypothesis that CSF neuropeptides have regulatory effects and further demonstrate a link between opioid and ET system.
机译:几条证据表明,中央内源性阿片样物质和内皮素(ET)系统相互调节。为了进一步探讨这一想法,我们确定了脑室内(i.c.v.)抗β-内啡肽IgG(兔)给药对阿片样物质,促肾上腺皮质激素释放激素和内皮素受体的表达水平以及ET-1的组织浓度的影响。将套管植入外侧脑室三天后,在第1天,对雄性Sprague-Dawley大鼠进行10微升(icv)对照兔IgG(2.5微克/微升)或抗β-内啡肽IgG(2.5微克/微升)的给药。在第3和5天进行安乐死,将动物安乐死并收集尾状,皮层和海马以进行蛋白质印迹分析。抗β-内啡肽IgG下调了尾状体中ET-A受体蛋白的表达(51%),但对mu,delta,κ阿片样物质,ET-B,CRH-1和CRH-2受体的表达没有影响在任何大脑区域。抗β-内啡肽IgG使尾状组织中的ET-1水平增加30.3%。 [35S]GTP-γ-S结合试验表明,抗β-内啡肽IgG可提高[D-Ala2-MePhe4,Gly-ol5]脑啡肽的功效,而不会改变其在尾状核中的效力。对照实验表明,在尾状,皮层和海马样品中均未检测到兔IgG。这些结果表明,CSF中的β-内啡肽可协调调节大鼠尾状体中的ET-1水平和ET-A受体。这些发现支持了脑脊液神经肽具有调节作用的假设,并进一步证明了阿片类药物与ET系统之间的联系。

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