Grafinger Katharina Elisabeth, Kassis Wassilis, Favre Céline A, Aksoy Dilan, Gaugler Stefan
Institute of Chemistry and Bioanalytics, University of Applied Sciences and Arts Northwestern Switzerland, Muttenz, Switzerland.
Institute of Research and Development, School of Education, University of Applied Sciences and Arts Northwestern Switzerland, Windisch, Switzerland.
Drug Test Anal. 2024 Dec;16(12):1564-1574. doi: 10.1002/dta.3678. Epub 2024 Mar 13.
In previous studies, various steroids have been associated with stress and have therefore been quantified to investigate stress-related questions. Since the main stress-related steroid cortisol follows a circadian rhythm, often hair is analysed to quantify this steroid. Further, hair analysis gives the unique possibility of long-time monitoring by analysing a certain segment of hair, since hair grows on average 1 cm per month. Hair is a difficult matrix due to the complex sample preparation with many steps including washing and grinding, followed by various extraction steps. Additionally, steroids are endogenous and are therefore present in the hair matrix. Hence, no analyte free matrix is available, which is needed for the quantification via external calibrators. To overcome this problem, the so-called surrogate methods can be used, for which a C labelled or deuterated reference compound of the steroid of interest is used for quantification. In the present study, a surrogate method was developed and fully validated for the quantitative analysis of seven steroids in human hair. Validation experiments showed that the method is further suitable for semi-quantitative analysis of estradiol. However, it is not suitable for the analysis of androsterone and DHEAS. The method was successfully used to analyse steroids in a comprehensive study of 360 adolescent hair samples, enabling research into stress markers.
在以往的研究中,各种类固醇与应激相关,因此对其进行定量分析以研究与应激相关的问题。由于与应激相关的主要类固醇皮质醇遵循昼夜节律,通常会分析头发以定量这种类固醇。此外,头发分析通过分析特定长度的头发段提供了长期监测的独特可能性,因为头发平均每月生长1厘米。头发是一种难以处理的基质,因为其样品制备过程复杂,包括多个步骤,如清洗、研磨,随后是各种提取步骤。此外,类固醇是内源性的,因此存在于头发基质中。因此,没有可用于通过外部校准物进行定量的无分析物基质。为了克服这个问题,可以使用所谓的替代方法,即使用感兴趣的类固醇的碳标记或氘代参考化合物进行定量。在本研究中,开发了一种替代方法并对人发中七种类固醇的定量分析进行了全面验证。验证实验表明,该方法还适用于雌二醇的半定量分析。然而,它不适用于雄酮和硫酸脱氢表雄酮的分析。该方法已成功用于对360份青少年头发样本的综合研究中类固醇的分析,从而能够研究应激标志物。