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Mass Spectrometry-Based Steroid Profiling: Meeting Unmet Clinical Needs

机译:基于质谱的类固醇分析:满足未满足的临床需求

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Despite ongoing concerns regarding its clinical application, mass spectrometry (MS)-based steroid assay represents a promising tool in endocrine research. Recent studies indicate that monitoring the blood levels of individual sterols provides improved diagnostic insight into hyperlipidemia compared with immunoassays routinely used in clinical practice. Hypercortisolism and hyperaldosteronism can also be easily evaluated along with successful subtyping of adrenal diseases using MS-based methods, while metabolic signatures of sex steroids provide experimental evidence of abnormal puberty and male infertility. Many MS-based biological and clinical studies are based on liquid chromatography-mass spectrometry (LC-MS) coupled to electrospray ionization and tandem MS scan modes. However, gas chromatography-mass spectrometry (GC-MS) provides better chromatographic separation. Improved chromatographic resolution enables large-scale steroid profiling to allow a bird-eye view and increase the chances of identifying potent biomarkers in endocrine research. In addition to the technical advantages of MS-based assays over immunoassays, minimizing the sample amounts with acceptable analytical sensitivity and standardization of surrogate materials provides cutting-edge tools for precision and personalized medicine.
机译:尽管对其临床应用仍存在担忧,但基于质谱(MS)的类固醇分析在内分泌研究中是一个很有前途的工具。最近的研究表明,与临床实践中常规使用的免疫分析方法相比,监测血液中单个甾醇的水平可以更好地诊断高脂血症。皮质醇增多症和醛固酮增多症也可以很容易地评估,同时使用基于MS的方法成功地对肾上腺疾病进行分型,而性类固醇的代谢特征为青春期异常和男性不育提供了实验证据。许多基于质谱的生物学和临床研究都基于液相色谱-质谱(LC-MS)结合电喷雾电离和串联质谱扫描模式。然而,气相色谱-质谱(GC-MS)提供了更好的色谱分离。改进的色谱分辨率使大规模类固醇分析能够进行鸟瞰,并增加在内分泌研究中识别有效生物标记物的机会。除了基于MS的分析优于免疫分析的技术优势外,以可接受的分析灵敏度和替代材料的标准化将样本量降至最低,为精确和个性化医疗提供了前沿工具。

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