Institute of Metabolism and Systems Research (IMSR), University of Birmingham, Birmingham, UK.
Department of Biochemistry, Stellenbosch University, Stellenbosch, South Africa.
J Steroid Biochem Mol Biol. 2019 Nov;194:105439. doi: 10.1016/j.jsbmb.2019.105439. Epub 2019 Jul 27.
Advances in technology have allowed for the sensitive, specific, and simultaneous quantitative profiling of steroid precursors, bioactive steroids and inactive metabolites, facilitating comprehensive characterization of the serum and urine steroid metabolomes. The quantification of steroid panels is therefore gaining favor over quantification of single marker metabolites in the clinical and research laboratories. However, although the biochemical pathways for the biosynthesis and metabolism of steroid hormones are now well defined, a gulf still exists between this knowledge and its application to the measured steroid profiles. In this review, we present an overview of steroid hormone biosynthesis and metabolism by the liver and peripheral tissues, specifically highlighting the pathways linking and differentiating the serum and urine steroid metabolomes. A brief overview of the methodology used in steroid profiling is also provided.
技术的进步使得对甾体前体、生物活性甾体和无活性代谢物进行敏感、特异和同时定量分析成为可能,从而促进了对血清和尿液甾体代谢组的全面描述。因此,甾体组分析的定量检测正在取代单个标志物代谢物的定量检测,在临床和研究实验室中得到越来越多的应用。然而,尽管甾体激素生物合成和代谢的生化途径现在已经得到很好的定义,但在这些知识与测量的甾体谱的应用之间仍然存在差距。在这篇综述中,我们介绍了肝脏和外周组织中甾体激素生物合成和代谢的概述,特别强调了连接和区分血清和尿液甾体代谢组的途径。同时,还简要概述了用于甾体谱分析的方法学。