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硫酸化途径:通过 LC-MS/MS 分析二硫酸盐靶向的替代甾体硫酸化途径:在甾体合成障碍的产前诊断中的应用。

SULFATION PATHWAYS: Alternate steroid sulfation pathways targeted by LC-MS/MS analysis of disulfates: application to prenatal diagnosis of steroid synthesis disorders.

机构信息

Integrative Pharmacology and Systems Neuroscience GroupIMIM, Hospital del Mar, Barcelona, Spain

Department of Experimental and Health SciencesUniversitat Pompeu Fabra, Barcelona, Spain.

出版信息

J Mol Endocrinol. 2018 Aug;61(2):M1-M12. doi: 10.1530/JME-17-0286. Epub 2018 Feb 19.

Abstract

The steroid disulfates ( bis-sulfates) are a significant but minor fraction of the urinary steroid metabolome that have not been widely studied because major components are not hydrolyzed by the commercial sulfatases commonly used in steroid metabolomics. In early studies, conjugate fractionation followed by hydrolysis using acidified solvent (solvolysis) was used for the indirect detection of this fraction by GC-MS. This paper describes the application of a specific LC-MS/MS method for the direct identification of disulfates in urine, and their use as markers for the prenatal diagnosis of disorders causing reduced estriol production: STSD (steroid sulfatase deficiency), SLOS (Smith-Lemli-Opitz syndrome) and PORD (P450 oxidoreductase deficiency). Disulfates were detected by monitoring a constant ion loss (CIL) from the molecular di-anion. While focused on disulfates, our methodology included an analysis of intact steroid glucuronides and monosulfates because steroidogenic disorder diagnosis usually requires an examination of the complete steroid profile. In the disorders studied, a few individual steroids (as disulfates) were found particularly informative: pregn-5-ene-3β,20-diol, pregn-5-ene-3β,21-diol (STSD, neonatal PORD) and 5α-pregnane-3β,20-diol (pregnancy PORD). Authentic steroid disulfates were synthesized for use in this study as aid to characterization. Tentative identification of 5ξ-pregn-7-ene-3ξ,20-diol and 5ξ-pregn-7-ene-3ξ,17,20-triol disulfates was also obtained in samples from SLOS affected pregnancies. Seven ratios between the detected metabolites were applied to distinguish the three selected disorders from control samples. Our results show the potential of the direct detection of steroid conjugates in the diagnosis of pathologies related with steroid biosynthesis.

摘要

类固醇双硫酸盐(bis-sulfates)是尿中类固醇代谢物的一个重要但次要的部分,由于商业用类固醇代谢组学中常用的硫酸酯酶不能水解主要成分,因此尚未得到广泛研究。在早期研究中,采用结合物分级分离,然后使用酸化溶剂(溶剂解)进行水解,通过 GC-MS 间接检测该部分。本文描述了一种特定的 LC-MS/MS 方法在尿液中直接鉴定双硫酸盐的应用,以及它们作为导致雌三醇产生减少的疾病产前诊断标志物的应用:STSD(类固醇硫酸酯酶缺乏症)、SLOS(Smith-Lemli-Opitz 综合征)和 PORD(P450 氧化还原酶缺乏症)。通过监测分子二阴离子的恒定离子损失(CIL)来检测双硫酸盐。虽然我们的方法侧重于双硫酸盐,但它还包括对完整类固醇葡萄糖醛酸和单硫酸盐的分析,因为类固醇生成障碍的诊断通常需要检查完整的类固醇谱。在所研究的疾病中,发现了几种个体类固醇(作为双硫酸盐)特别具有信息性:孕烷-5-烯-3β,20-二醇、孕烷-5-烯-3β,21-二醇(STSD、新生儿 PORD)和 5α-孕烷-3β,20-二醇(妊娠 PORD)。为了帮助鉴定,本研究中使用了合成的类固醇双硫酸盐作为辅助物。在受 SLOS 影响的妊娠样本中,还获得了 5ξ-孕烷-7-烯-3ξ,20-二醇和 5ξ-孕烷-7-烯-3ξ,17,20-三醇双硫酸盐的暂定鉴定。在区分这三种选定的疾病与对照样本时,使用了七种检测代谢物之间的比值。我们的结果表明,直接检测类固醇结合物在诊断与类固醇生物合成相关的病理学方面具有潜力。

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