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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Uptake and metabolism of sulphated steroids by the blood–brain barrier in the adult male rat
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Uptake and metabolism of sulphated steroids by the blood–brain barrier in the adult male rat

机译:成年雄性大鼠血脑屏障的硫酸化类固醇的摄取和新陈代谢

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Abstract Little is known about the origin of the neuroactive steroids dehydroepiandrosterone sulphate ( DHEAS ) and pregnenolone sulphate (PregS) in the brain or of their subsequent metabolism. Using rat brain perfusion in?situ , we have found 3 H‐PregS to enter more rapidly than 3 H‐ DHEAS and both to undergo extensive (?50%) desulphation within 0.5?min of uptake. Enzyme activity for the steroid sulphatase catalysing this deconjugation was enriched in the capillary fraction of the blood–brain barrier and its mRNA expressed in cultures of rat brain endothelial cells and astrocytes. Although permeability measurements suggested a net efflux, addition of the efflux inhibitors GF 120918 and/or MK 571 to the perfusate reduced rather than enhanced the uptake of 3 H‐ DHEAS and 3 H‐PregS; a further reduction was seen upon the addition of unlabelled steroid sulphate, suggesting a saturable uptake transporter. Analysis of brain fractions after 0.5?min perfusion with the 3 H‐steroid sulphates showed no further metabolism of PregS beyond the liberation of free steroid pregnenolone. By contrast, DHEAS underwent 17‐hydroxylation to form androstenediol in both the steroid sulphate and the free steroid fractions, with some additional formation of androstenedione in the latter. Our results indicate a gain of free steroid from circulating steroid sulphates as hormone precursors at the blood–brain barrier, with implications for ageing, neurogenesis, neuronal survival, learning and memory.
机译:摘要毫无熟悉,在大脑或其随后的代谢中,神经活性类固醇脱氢脱硫酮酮酮硫酸盐(DHEAS)和妊娠硫酸盐(PREGS)的起源。使用大鼠脑灌注在?原位中,我们发现3 H-PREGS进入比3个H-DAS更快,并且两者都在0.5?分钟内进行广泛的(& 50%)脱硫。类固醇硫酸酯催化的酶活性这种欺诈化的血脑屏障毛细血管分数及其在大鼠脑内皮细胞和星形胶质细胞的培养物中表达的mRNA。虽然渗透率测量表明净流速,但添加了抑制剂GF 120918和/或MK 571的添加到灌注液,而不是增强了3 H-DHEAS和3 H-PREG的摄取;在加入未标记的类固醇硫酸异细硫酸盐时可以看到进一步的还原,表明可饱和摄取转运蛋白。 0.5〜min灌注与3 H-类固醇硫酸盐后脑级分的分析显示,除了游离类固醇孕烯醇的解放之外,PREG的进一步代谢。相比之下,DHEAS在类固醇硫酸盐和游离类固醇级分中形成17-羟基化以形成雄激素,在后者在后甾醇中的一些额外地形成。我们的结果表明,从血脑屏障的激素前体循环类固醇硫酸盐的游离类固醇的增益,具有对老化,神经发生,神经元生存,学习和记忆的影响。

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