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测定类固醇代谢组学作为精神分裂症实验室诊断的一种可能工具。

Determination of steroid metabolome as a possible tool for laboratory diagnosis of schizophrenia.

机构信息

Institute of Endocrinology, Prague, Czech Republic.

出版信息

J Steroid Biochem Mol Biol. 2013 Jan;133:77-83. doi: 10.1016/j.jsbmb.2012.08.009. Epub 2012 Aug 24.

Abstract

Metabolomic studies represent a promising tool for early diagnosis of schizophrenia. The aim of this study was to find differences in the steroid spectrum in patients and controls, and to assess the diagnosis of schizophrenia by building a predictive model based on steroid data. Thirty-nine serum steroids (22 neuroactive steroids and their metabolites and 17 polar conjugates) representing steroid metabolome were measured by gas chromatography-mass spectrometry in 22 drug-naive (first episode) schizophrenia patients (13 men and 9 women) before and after six-month treatment with atypical antipsychotics. The results were compared to the data from healthy subjects (22 males, 25 females). In summary the following significant differences were found: (1) In both sexes higher levels of pregnenolone sulfate and sulfated 5α- as well as 5β-saturated metabolites of C21-steroids in progesterone metabolic pathway were found in patients, pointing to decreased activity of sulfatase. (2) In a few instances decreased levels of the respective 5α-metabolites of C21 steroids were found in patients. (3) As C19 steroids concern, in both sexes there were considerably lowered levels of 5β-reduced metabolites in patients. On the other hand, with only a few exceptions, the treatment did not significantly influence most steroid levels. Further, to assess the relationships between schizophrenia status and steroid levels and to build the predictive model of schizophrenia, multivariate regression with reduction of dimensionality (the method of orthogonal projections to latent structures, OPLS) was applied. Irrespective of the small number of patients, use of this model enabled us to state the diagnosis of schizophrenia with almost 100% sensitivity. Our findings suggest that the assessment of steroid levels may become a valid and accurate laboratory test in psychiatry. A limitation of our study is the absence of subjects with a diagnosis other than schizophrenia, so we cannot conclude whether the results are specific for schizophrenia. On the other hand, steroid metabolome model may be used as a diagnostic tool for further studies.

摘要

代谢组学研究代表了一种有前途的精神分裂症早期诊断工具。本研究旨在寻找患者和对照组之间类固醇谱的差异,并通过构建基于类固醇数据的预测模型来评估精神分裂症的诊断。通过气相色谱-质谱法测量了 39 种血清类固醇(22 种神经活性类固醇及其代谢物和 17 种极性共轭物),代表类固醇代谢组,这些患者均为未经药物治疗(首发)的精神分裂症患者(13 名男性和 9 名女性),在接受非典型抗精神病药物治疗 6 个月前后。结果与健康受试者(22 名男性,25 名女性)的数据进行了比较。总的来说,发现了以下显著差异:(1)在两性中,患者的孕烯醇酮硫酸盐以及孕酮代谢途径中 5α-和 5β-饱和 C21-类固醇代谢物的硫酸盐水平均较高,表明硫酸酯酶活性降低。(2)在某些情况下,患者的相应 C21 类固醇的 5α-代谢物水平降低。(3)就 C19 类固醇而言,两性患者的 5β-还原代谢物水平均明显降低。另一方面,除了少数例外,治疗并未显著影响大多数类固醇水平。此外,为了评估精神分裂症状态与类固醇水平之间的关系并建立精神分裂症的预测模型,应用了具有降维功能的多元回归(正交投影到潜在结构方法,OPLS)。尽管患者数量较少,但使用该模型使我们能够以近 100%的灵敏度确定精神分裂症的诊断。我们的研究结果表明,类固醇水平的评估可能成为精神病学中一种有效且准确的实验室检测方法。我们研究的局限性是缺乏除精神分裂症以外的其他诊断的受试者,因此我们不能得出这些结果是否对精神分裂症具有特异性的结论。另一方面,类固醇代谢组模型可作为进一步研究的诊断工具。

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