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Development of a Multi-class Steroid Hormone Screening Method using Liquid Chromatography/Tandem Mass Spectrometry (LC-MS/MS)

机译:液相色谱/串联质谱法(LC-MS / MS)的多类类固醇激素筛选方法的开发

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摘要

Monitoring complex endocrine pathways is often limited by indirect measurement or measurement of a single hormone class per analysis. There is a burgeoning need to develop specific direct-detection methods capable of providing simultaneous measurement of biologically relevant concentrations of multiple classes of hormones (estrogens, androgens, progestogens, and corticosteroids). The objectives of this study were to develop a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method for multi-class steroid hormone detection using biologically relevant concentrations, then test limits of detection (LOD) in a high-background matrix by spiking charcoal-stripped fetal bovine serum (FBS) extract. Accuracy was tested with National Institute of Standards and Technology Standard Reference Materials (SRMs) with certified concentrations of cortisol, testosterone, and progesterone. 11-Deoxycorticosterone, 11-deoxycortisol, 17-hydroxypregnenolone, 17-hydroxyprogesterone, adrenosterone, androstenedione, cortisol, corticosterone, dehydroepiandrosterone, dihydrotestosterone, estradiol, estriol, estrone, equilin, pregnenolone, progesterone, and testosterone were also measured using isotopic dilution. Dansyl chloride (DC) derivatization was investigated maintaining the same method to improve and expedite estrogen analysis. Biologically relevant LODs were determined for 15 hormones. DC derivatization improved estrogen response two- to eight-fold, and improved chromatographic separation. All measurements had an accuracy ≤ 14 % difference from certified values (not accounting for uncertainty) and relative standard deviation ≤ 14 %. This method chromatographically separated and quantified biologically relevant concentrations of four hormone classes using highly specific fragmentation patterns and measured certified values of hormones that were previously split into three separate chromatographic methods.
机译:监测复杂的内分泌途径通常受到间接测量或每次分析测量单个激素类别的限制。迫切需要开发能够直接测量多种激素(雌激素,雄激素,孕激素和皮质类固醇)的生物学相关浓度的特定直接检测方法。这项研究的目的是开发一种利用生物相关浓度的液相色谱-串联质谱(LC-MS / MS)方法进行多类固醇激素检测的方法,然后通过以下方法在高背景基质中测试检测限(LOD):尖刺的木炭剥离的胎牛血清(FBS)提取物。使用美国国家标准技术研究所标准参考物质(SRM)并以皮质醇,睾丸激素和孕酮的认证浓度测试了准确性。还使用11-脱氧皮质酮,11-脱氧皮质醇,17-羟基孕烯醇酮,17-羟基孕酮,肾上腺素,雄烯二酮,皮质醇,皮质酮,脱氢表雄酮,二氢睾丸酮,雌二醇,雌三醇,雌酮,马鞭草酮,孕烯醇酮,异孕酮和睾丸激素稀释剂进行了测定。研究了Dansyl chloride(DC)衍生化过程,并保持了相同的方法来改善和加快雌激素分析。确定了15种激素的生物学相关LOD。 DC衍生化可将雌激素反应提高2到8倍,并改善色谱分离。所有测量值与认证值的准确度相差≤14%(不考虑不确定性),相对标准偏差≤14%。该方法使用高度特异性的片段化模式色谱分离并定量分析了四种激素类别的生物学相关浓度,并测定了以前划分为三种单独色谱方法的激素的标准值。

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