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成年雄性大鼠脑中神经活性甾体及其前体和代谢产物的鉴定。

Identification of neuroactive steroids and their precursors and metabolites in adult male rat brain.

作者信息

Ebner M J, Corol D I, Havlíková H, Honour J W, Fry J P

机构信息

Department of Physiology, University College London, London WC1E 6BT, United Kingdom.

出版信息

Endocrinology. 2006 Jan;147(1):179-90. doi: 10.1210/en.2005-1065. Epub 2005 Oct 13.

Abstract

Steroids in the brain arise both from local synthesis and from peripheral sources and have a variety of effects on neuronal function. However, there is little direct chemical evidence for the range of steroids present in brain or of the pathways for their synthesis and inactivation. This information is a prerequisite for understanding the regulation and function of brain steroids. After extraction from adult male rat brain, we have fractionated free steroids and their sulfate esters and then converted them to heptafluorobutyrate or methyloxime-trimethylsilyl ether derivatives for unequivocal identification and assay by gas chromatography analysis and selected ion monitoring mass spectrometry. In the free steroid fraction, corticosterone, 3alpha,5alpha-tetrahydrodeoxycorticosterone, testosterone, and dehydroepiandrosterone were found in the absence of detectable precursors usually found in endocrine glands, indicating peripheral sources and/or alternative synthetic pathways in brain. Conversely, the potent neuroactive steroid 3alpha,5alpha-tetrahydroprogesterone (allopregnanolone) was found in the presence of its precursors pregnenolone, progesterone, and 5alpha-dihydroprogesterone. Furthermore, the presence of 3beta-, 11beta-, 17alpha-, and 20alpha-hydroxylated metabolites of 3alpha,5alpha-tetrahydroprogesterone implicated possible inactivation pathways for this steroid. The 20alpha-reduced metabolites could also be found for pregnenolone, progesterone, and 5alpha-dihydroprogesterone, introducing a possible regulatory diversion from the production of 3alpha,5alpha-tetrahydroprogesterone. In the steroid sulfate fraction, dehydroepiandrostrone sulfate was identified but not pregnenolone sulfate. Although pharmacologically active, identification of the latter appears to be an earlier methodological artifact, and the compound is thus of doubtful physiological significance in the adult brain. Our results provide a basis for elucidating the origins and regulation of brain steroids.

摘要

大脑中的类固醇既来源于局部合成,也来源于外周来源,并且对神经元功能有多种影响。然而,关于大脑中存在的类固醇种类及其合成和失活途径,几乎没有直接的化学证据。这些信息是理解大脑类固醇的调节和功能的先决条件。从成年雄性大鼠大脑中提取后,我们对游离类固醇及其硫酸酯进行了分级分离,然后将它们转化为七氟丁酸酯或甲基肟 - 三甲基硅醚衍生物,以便通过气相色谱分析和选择离子监测质谱进行明确鉴定和测定。在游离类固醇组分中,发现了皮质酮、3α,5α - 四氢脱氧皮质酮、睾酮和脱氢表雄酮,而在内分泌腺中通常可检测到的前体不存在,这表明其来源于外周或大脑中存在替代合成途径。相反,在其前体孕烯醇酮、孕酮和5α - 二氢孕酮存在的情况下,发现了强效神经活性类固醇3α,5α - 四氢孕酮(别孕烯醇酮)。此外,3α,5α - 四氢孕酮的3β - 、11β - 、17α - 和20α - 羟基化代谢物的存在暗示了该类固醇可能的失活途径。孕烯醇酮、孕酮和5α - 二氢孕酮也可发现20α - 还原代谢物,这可能导致从3α,5α - 四氢孕酮的产生出现调节性转向。在类固醇硫酸酯组分中,鉴定出了硫酸脱氢表雄酮,但未鉴定出硫酸孕烯醇酮。尽管后者具有药理活性,但它的鉴定似乎是早期的方法学假象,因此该化合物在成人大脑中的生理意义存疑。我们的结果为阐明大脑类固醇的起源和调节提供了基础。

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