Steroid Research & Mass Spectrometry Unit, Laboratory for Translational Hormone Analytics in Paediatric Endocrinology, Division of Paediatric Endocrinology & Diabetology, Center of Child and Adolescent Medicine, Justus Liebig University, Giessen, Germany.
Veterinary Clinic for Obstetrics, Gynecology and Andrology of Large and Small Animals, Faculty of Veterinary Medicine, Justus Liebig University, Giessen, Germany.
J Steroid Biochem Mol Biol. 2018 May;179:88-103. doi: 10.1016/j.jsbmb.2017.09.003. Epub 2017 Sep 28.
Steroids are small and highly important structural or signalling molecules in living organisms and their metabolism is complex. Due to the multiplicity of enzymes involved there are many different steroid related disorders. E.g., an individual enzyme defect is rather rare but can share various clinical symptoms and can thus be hardly diagnosed clinically. Therefore, reliable hormonal determination still presents the most reasonable initial diagnostic approach and helps to avoid uncritical and expensive attempts at molecular diagnostic testing. It also presents a backbone of monitoring these complex patients. In science, reliable hormone measurement is indispensable for the elucidation of new mechanisms of steroid hormone actions. Steroid analytics is highly challenging and should never be considered trivial. Most common methods for steroid determination comprise traditionally immunoassay, or more recently, mass spectrometry based methods. It is absolutely necessary that clinicians and scientists know the methods they are applying by heart. With the introduction of automated direct assays, a loss of quality could be observed over the last two decades in the field of steroid immunoassays. This review wants to meet the need for profound information and orientation in the field of steroid analysis. The pros and cons of the most important methods, such as immunoassays and mass spectrometry based methods will be discussed. The focus of the latter will lie on gas chromatography-mass spectrometry (GC-MS) as well as liquid chromatography-mass spectrometry (LC-MS). Selected analytical applications from our Deutsche Forschungsgemeinschaft Research Group FOR 1369 "Sulfated Steroids in Reproduction" will illustrate the contents. In brief, immunoassays have for long presented the traditional technique for steroid analysis. They are easy to set up. Only one analyte can be measured per immunoassay. Specificity problems can arise and caution has to be exerted especially regarding direct assays lacking purification steps. Mass spectrometry based methods provide structural information on the analyte and thus higher specificity. In combination with chromatographic techniques, they permit the simultaneous determination of a multitude of analytes. Highest specificity can be obtained using GC-MS, a sophisticated but most powerful tool for characterizing steroid metabolomes. LC-MS is a true high throughput technique and highly suited for detecting complex steroids. GC-MS and LC-MS are not competing but complementary techniques. Since reliable steroid determination requires extremely high expertise in the field of analytics as well as steroid biochemistry, it is recommended that collaborations and networking with highly specialized centers of expertise are developed.
甾体是生物体内小而重要的结构或信号分子,其代谢非常复杂。由于涉及的酶种类繁多,因此存在许多不同的与甾体相关的疾病。例如,单个酶缺陷较为罕见,但可能具有各种临床表现,因此在临床上很难诊断。因此,可靠的激素测定仍然是最合理的初始诊断方法,有助于避免在分子诊断测试上进行不必要的和昂贵的尝试。它也是监测这些复杂患者的基础。在科学中,可靠的激素测量对于阐明甾体激素作用的新机制是不可或缺的。甾体分析极具挑战性,绝不能被视为微不足道。甾体测定最常用的方法包括传统的免疫测定法,或最近的基于质谱的方法。临床医生和科学家必须熟悉他们所应用的方法。随着自动化直接测定法的引入,过去二十年来,甾体免疫测定领域的质量有所下降。本综述旨在满足甾体分析领域中对深入信息和方向的需求。本文将讨论最重要的方法(如免疫测定法和基于质谱的方法)的优缺点。后者的重点将放在气相色谱-质谱法(GC-MS)和液相色谱-质谱法(LC-MS)上。我们的德国研究联合会研究小组 FOR 1369“生殖中的硫酸化甾体”的选定分析应用将说明内容。简而言之,免疫测定法长期以来一直是甾体分析的传统技术。它们易于建立。每个免疫测定法只能测量一种分析物。可能会出现特异性问题,尤其是对于缺乏纯化步骤的直接测定法,需要特别注意。基于质谱的方法可提供分析物的结构信息,因此具有更高的特异性。与色谱技术结合使用时,它们可以同时测定多种分析物。GC-MS 可获得最高的特异性,它是一种用于表征甾体代谢组学的复杂但最强大的工具。LC-MS 是一种真正的高通量技术,非常适合检测复杂的甾体。GC-MS 和 LC-MS 不是竞争关系,而是互补关系。由于可靠的甾体测定需要在分析和甾体生物化学领域具有极高的专业知识,因此建议与高度专业化的专业知识中心建立合作关系和网络。