首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Effects on DHEA levels by estrogen in rat astrocytes and CNS co-cultures via the regulation of CYP7B1-mediated metabolism.
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Effects on DHEA levels by estrogen in rat astrocytes and CNS co-cultures via the regulation of CYP7B1-mediated metabolism.

机译:通过调节CYP7B1介导的代谢,雌激素对大鼠星形胶质细胞和CNS共培养物中DHEA水平的影响。

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摘要

The neurosteroid dehydroepiandrosterone (DHEA) is formed locally in the CNS and has been implicated in several processes essential for CNS function, including control of neuronal survival. An important metabolic pathway for DHEA in the CNS involves the steroid hydroxylase CYP7B1. In previous studies, CYP7B1 was identified as a target for estrogen regulation in cells of kidney and liver. In the current study, we examined effects of estrogens on CYP7B1-mediated metabolism of DHEA in primary cultures of rat astrocytes and co-cultures of rat CNS cells. Astrocytes, which interact with neurons in several ways, are important for brain neurosteroidogenesis. We found that estradiol significantly suppressed CYP7B1-mediated DHEA hydroxylation in primary mixed CNS cultures from fetal and newborn rats. Also, CYP7B1-mediated DHEA hydroxylation and CYP7B1 mRNA were markedly suppressed by estrogen in primary cultures of rat astrocytes. Interestingly, diarylpropionitrile, a well-known agonist of estrogen receptor beta, also suppressed CYP7B1-mediated hydroxylation of DHEA. Several previous studies have reported neuroprotective effects of estrogens. The current data indicate that one of the mechanisms whereby estrogen can exert protective effects in the CNS may involve increase of the levels of DHEA by suppression of its metabolism.
机译:神经甾体脱氢表雄酮(DHEA)在中枢神经系统中局部形成,并参与了中枢神经系统功能必不可少的几个过程,包括控制神经元存活。 DHEA在中枢神经系统的重要代谢途径涉及类固醇羟化酶CYP7B1。在先前的研究中,CYP7B1被确定为肾和肝细胞中雌激素调节的靶标。在当前的研究中,我们检查了雌激素对大鼠星形胶质细胞原代培养和大鼠CNS细胞共培养中DHEA的CYP7B1介导的DHEA代谢的影响。星形胶质细胞以多种方式与神经元相互作用,对大脑神经甾体生成很重要。我们发现雌二醇显着抑制CYP7B1介导的DHEA羟基化从胎儿和新生大鼠的原始混合CNS培养物中。此外,在大鼠星形胶质细胞的原代培养物中,雌激素显着抑制了CYP7B1介导的DHEA羟化和CYP7B1 mRNA的表达。有趣的是,二芳基丙腈,一种众所周知的雌激素受体β激动剂,也抑制CYP7B1介导的DHEA羟基化。先前的一些研究报道了雌激素的神经保护作用。当前数据表明,雌激素可在中枢神经系统中发挥保护作用的机制之一可能涉及通过抑制其代谢来增加DHEA的水平。

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