Institute of Biochemistry, German Sport University Cologne, Am Sportpark Müngersdorf 6, Köln, Germany.
Drug Test Anal. 2010 Nov-Dec;2(11-12):620-9. doi: 10.1002/dta.219. Epub 2010 Nov 16.
The degradation processes in deficiently stored urine samples are well investigated regarding steroid concentrations and diagnostic ratios, such as the quotient of testosterone divided by epitestosterone. In contrast, nothing is known about the influence on carbon isotope ratios (CIR) by inappropriate storage conditions. In general, it is assumed that degradation, i.e. deconjugation or dehydrogenation, does not change CIR and thus CIR can be used in cases where the steroid profile turns out to be invalid. Therefore, the CIR of urinary steroids was investigated in different urine samples during the course of degradation over a time period of six months. Several steroids excreted as glucuronides (androsterone (A), etiocholanolone (E), testosterone, pregnanediol (PD) and 5α- and 5β-androstane-3α,17β-diol) or sulfo-conjugated (A, E and androst-5-ene-3β,17β-diol (5EN17b)) were investigated together with their unconjugated correspondents (A, E, PD and 5EN17b) and the main dehydrogenation products (5α- and 5β-androstane-3,17-dion and androst-4-ene-3,17-dion). For this purpose, the exiting methods for CIR determination were extended and validated. In addition, the urinary concentrations of all investigated steroids were monitored. Particular attention was paid to dehydroepiandrosterone conjugated and unconjugated together with its degradation product 3α,5-cyclo-5α-androstan-6β-ol-17-one as here the strongest influence on CIR was expected.
关于甾体浓度和诊断比值(如睾酮与表睾酮的比值),在储存不足的尿液样本中的降解过程已经得到了很好的研究。相比之下,关于储存条件不当对碳同位素比值(CIR)的影响,人们知之甚少。一般来说,人们认为降解,即脱结合或脱氢,不会改变 CIR,因此在甾体谱无效的情况下可以使用 CIR。因此,在六个月的时间内,研究了不同尿液样本在降解过程中的 CIR。研究了几种作为葡萄糖醛酸苷(雄酮(A)、表雄烷酮(E)、睾酮、孕烷二醇(PD)和 5α-和 5β-雄烷-3α,17β-二醇)或硫酸结合物(A、E 和雄烷-5-烯-3β,17β-二醇(5EN17b))排泄的甾体,以及它们的非结合对应物(A、E、PD 和 5EN17b)和主要的脱氢产物(5α-和 5β-雄烷-3,17-二酮和雄烷-4-烯-3,17-二酮)。为此,扩展和验证了现有的 CIR 测定方法。此外,还监测了所有研究甾体的尿液浓度。特别关注了脱氢表雄酮的结合物和非结合物,以及其降解产物 3α,5-环-5α-雄烷-6β-醇-17-酮,因为预计这里对 CIR 的影响最大。