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维生素D的诊断要点:维生素D代谢产物分析的临床应用

Diagnostic Aspects of Vitamin D: Clinical Utility of Vitamin D Metabolite Profiling.

作者信息

Jones Glenville, Kaufmann Martin

机构信息

Department of Biomedical and Molecular Sciences Queen's University Kingston Canada.

出版信息

JBMR Plus. 2021 Dec 3;5(12):e10581. doi: 10.1002/jbm4.10581. eCollection 2021 Dec.

Abstract

The assay of vitamin D that began in the 1970s with the quantification of one or two metabolites, 25-OH-D or 1,25-(OH)D, continues to evolve with the emergence of liquid chromatography tandem mass spectrometry (LC-MS/MS) as the technique of choice. This highly accurate, specific, and sensitive technique has been adopted by many fields of endocrinology for the measurement of multiple other components of the metabolome, and its advantage is that it not only makes it feasible to assay 25-OH-D or 1,25-(OH)D but also other circulating vitamin D metabolites in the vitamin D metabolome. In the process, this broadens the spectrum of vitamin D metabolites, which the clinician can use to evaluate the many complex genetic and acquired diseases of calcium and phosphate homeostasis involving vitamin D. Several examples are provided in this review that additional metabolites (eg, 24,25-(OH)D, 25-OH-D-26,23-lactone, and 1,24,25-(OH)D) or their ratios with the main forms offer valuable additional diagnostic information. This approach illustrates that biomarkers of disease can also include metabolites devoid of biological activity. Herein, a case is presented that the decision to switch to a LC-MS/MS technology permits the measurement of a larger number of vitamin D metabolites simultaneously and does not need to lead to a dramatic increase in cost or complexity because the technique uses a highly versatile tandem mass spectrometer with plenty of reserve analytical capacity. Physicians are encouraged to consider adding this rapidly evolving technique aimed at evaluating the wider vitamin D metabolome toward streamlining their approach to calcium- and phosphate-related disease states. © 2021 The Authors. published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research.

摘要

始于20世纪70年代的维生素D检测,最初是对一两种代谢产物25-羟基维生素D(25-OH-D)或1,25-二羟基维生素D(1,25-(OH)D)进行定量分析,随着液相色谱串联质谱法(LC-MS/MS)成为首选技术,这一检测方法也在不断发展。这种高度准确、特异且灵敏的技术已被许多内分泌领域采用,用于测量代谢组中的多种其他成分,其优势在于不仅能够检测25-OH-D或1,25-(OH)D,还能检测维生素D代谢组中的其他循环维生素D代谢产物。在此过程中,这拓宽了维生素D代谢产物的范围,临床医生可利用这些代谢产物来评估涉及维生素D的钙和磷稳态的许多复杂遗传和后天性疾病。本综述提供了几个例子,说明其他代谢产物(如24,25-二羟基维生素D(24,25-(OH)D)、25-羟基维生素D-26,23-内酯和1,24,25-三羟基维生素D(1,24,25-(OH)D))或它们与主要形式的比例可提供有价值的额外诊断信息。这种方法表明疾病的生物标志物也可以包括无生物活性的代谢产物。本文介绍了一个案例,即改用LC-MS/MS技术能够同时检测更多的维生素D代谢产物,且不会导致成本大幅增加或复杂性显著提高,因为该技术使用的是具有大量备用分析能力的高度通用的串联质谱仪。鼓励医生考虑采用这种快速发展的技术来评估更广泛的维生素D代谢组,以简化他们对钙和磷相关疾病状态的处理方法。© 2021作者。由Wiley Periodicals LLC代表美国骨与矿物质研究学会出版。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e29d/8674775/fd44ca86f8a8/JBM4-5-e10581-g003.jpg

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