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肾上腺肿瘤中的类固醇硫酸化

Steroid Sulfation in Adrenal Tumors.

作者信息

Mueller Jonathan Wolf, Vogg Nora, Lightning Thomas Alec, Weigand Isabel, Ronchi Cristina L, Foster Paul A, Kroiss Matthias

机构信息

Institute of Metabolism and Systems Research (IMSR), University of Birmingham, Birmingham, UK.

Centre for Endocrinology, Diabetes and Metabolism (CEDAM), Birmingham Health Partners, Birmingham, UK.

出版信息

J Clin Endocrinol Metab. 2021 Nov 19;106(12):3385-3397. doi: 10.1210/clinem/dgab182.

Abstract

CONTEXT

The adrenal cortex produces specific steroid hormones including steroid sulfates such as dehydroepiandrosterone sulfate (DHEAS), the most abundant steroid hormone in the human circulation. Steroid sulfation involves a multistep enzyme machinery that may be impaired by inborn errors of steroid metabolism. Emerging data suggest a role of steroid sulfates in the pathophysiology of adrenal tumors and as potential biomarkers.

EVIDENCE ACQUISITION

Selective literature search using "steroid," "sulfat*," "adrenal," "transport," "mass spectrometry" and related terms in different combinations.

EVIDENCE SYNTHESIS

A recent study highlighted the tissue abundance of estrogen sulfates to be of prognostic impact in adrenocortical carcinoma tissue samples using matrix-assisted laser desorption ionization mass spectrometry imaging. General mechanisms of sulfate uptake, activation, and transfer to substrate steroids are reasonably well understood. Key aspects of this pathway, however, have not been investigated in detail in the adrenal; these include the regulation of substrate specificity and the secretion of sulfated steroids. Both for the adrenal and targeted peripheral tissues, steroid sulfates may have relevant biological actions beyond their cognate nuclear receptors after desulfation. Impaired steroid sulfation such as low DHEAS in Cushing adenomas is of diagnostic utility, but more comprehensive studies are lacking. In bioanalytics, the requirement of deconjugation for gas-chromatography/mass-spectrometry has precluded the study of steroid sulfates for a long time. This limitation may be overcome by liquid chromatography/tandem mass spectrometry.

CONCLUSIONS

A role of steroid sulfation in the pathophysiology of adrenal tumors has been suggested and a diagnostic utility of steroid sulfates as biomarkers is likely. Recent analytical developments may target sulfated steroids specifically.

摘要

背景

肾上腺皮质产生特定的类固醇激素,包括硫酸脱氢表雄酮(DHEAS)等硫酸类固醇,它是人体循环中含量最丰富的类固醇激素。类固醇硫酸化涉及一个多步骤的酶机制,可能会因类固醇代谢的先天性缺陷而受损。新出现的数据表明硫酸类固醇在肾上腺肿瘤的病理生理学中发挥作用,并可能作为潜在的生物标志物。

证据获取

使用“类固醇”“硫酸化*”“肾上腺”“转运”“质谱”及相关术语以不同组合进行选择性文献检索。

证据综合

最近一项研究强调,使用基质辅助激光解吸电离质谱成像技术,硫酸雌激素在肾上腺皮质癌组织样本中的组织丰度具有预后意义。硫酸盐摄取、激活以及向底物类固醇转移的一般机制已得到较好理解。然而,该途径的关键方面在肾上腺中尚未得到详细研究;这些方面包括底物特异性的调节和硫酸化类固醇的分泌。对于肾上腺和靶向外周组织而言,硫酸类固醇在脱硫后可能具有超出其同源核受体的相关生物学作用。类固醇硫酸化受损,如库欣腺瘤中DHEAS水平较低,具有诊断价值,但缺乏更全面的研究。在生物分析中,气相色谱/质谱分析对去结合的要求长期以来阻碍了对硫酸类固醇的研究。液相色谱/串联质谱分析可能克服这一限制。

结论

已提出类固醇硫酸化在肾上腺肿瘤病理生理学中的作用,硫酸类固醇作为生物标志物可能具有诊断价值。最近的分析进展可能会专门针对硫酸化类固醇。

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