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Steroid Profiling by Gas Chromatography–Mass Spectrometry and High Performance Liquid Chromatography–Mass Spectrometry for Adrenal Diseases

机译:肾上腺疾病的气相色谱-质谱和高效液相色谱-质谱法分析类固醇

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摘要

The ability to measure steroid hormone concentrations in blood and urine specimens is central to the diagnosis and proper treatment of adrenal diseases. The traditional approach has been to assay each steroid hormone, precursor, or metabolite using individual aliquots of serum, each with a separate immunoassay. For complex diseases, such as congenital adrenal hyperplasia and adrenocortical cancer, in which the assay of several steroids is essential for management, this approach is time consuming and costly, in addition to using large amounts of serum. Gas chromatography/mass spectrometry profiling of steroid metabolites in urine has been employed for many years but only in a small number of specialized laboratories and suffers from slow throughput. The advent of commercial high-performance liquid chromatography instruments coupled to tandem mass spectrometers offers the potential for medium- to high-throughput profiling of serum steroids using small quantities of sample. Here, we review the physical principles of mass spectrometry, the instrumentation used for these techniques, the terminology used in this field and applications to steroid analysis.
机译:测量血液和尿液样本中类固醇激素浓度的能力对于肾上腺疾病的诊断和正确治疗至关重要。传统方法是使用单独的血清等分试样测定每种类固醇激素,前体或代谢产物,每种均进行单独的免疫测定。对于先天性肾上腺皮质增生和肾上腺皮质癌等复杂疾病,其中几种类固醇的测定对于管理至关重要,这种方法除了使用大量血清外,还很耗时且昂贵。尿中类固醇代谢物的气相色谱/质谱分析已经使用了很多年,但仅在少数专业实验室中使用,并且通量较低。商业高效液相色谱仪与串联质谱仪联用的出现,为使用少量样品进行血清类固醇的中至高通量分析提供了潜力。在这里,我们回顾了质谱的物理原理,用于这些技术的仪器,该领域中使用的术语以及在类固醇分析中的应用。

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