Department of Surgical, Medical, Molecular Pathology and Critical Care Medicine, University of Pisa, Pisa, Italy.
Department of Laboratory Medicine, Laboratory of Chemistry and Endocrinology, University Hospital of Pisa, Pisa, Italy.
Mass Spectrom Rev. 2022 May;41(3):443-468. doi: 10.1002/mas.21673. Epub 2020 Nov 25.
The importance of thyroid hormones in the regulation of development, growth, and energy metabolism is well known. Over the last decades, mass spectrometry has been extensively used to investigate thyroid hormone metabolism and to discover and characterize new molecules involved in thyroid hormones production, such as thyrotropin-releasing hormone. In the earlier period, the quantification methods, usually based on gas chromatography-mass spectrometry, were complicated and time consuming. They were mainly focused on basic research, and were not suitable for clinical diagnostics on a routine basis. The development of the modern mass spectrometers, mainly coupled to liquid chromatography, enabled simpler sample preparation procedures, and the accurate quantification of thyroid hormones, of their precursors, and of their metabolites in biological fluids, tissues, and cells became feasible. Nowadays, molecules of physiological and pathological interest can be assayed also for diagnostic purposes on a routine basis, and mass spectrometry is slowly entering the clinical laboratory. This review takes stock of the advancements in the field of thyroid metabolism that were carried out with mass spectrometry, with special focus on the use of this technique for the quantification of molecules involved in thyroid diseases.
甲状腺激素在调节发育、生长和能量代谢方面的重要性是众所周知的。在过去的几十年中,质谱技术被广泛用于研究甲状腺激素代谢,并发现和表征参与甲状腺激素产生的新分子,如促甲状腺激素释放激素。在早期,定量方法通常基于气相色谱-质谱法,较为复杂且耗时。这些方法主要集中在基础研究上,并不适合常规的临床诊断。现代质谱仪的发展,主要与液相色谱相结合,使得样品制备程序更加简单,并且可以在生物体液、组织和细胞中准确地定量甲状腺激素及其前体和代谢物。如今,基于质谱技术可以对生理和病理相关分子进行常规的诊断检测,质谱技术也在慢慢进入临床实验室。本文综述了利用质谱技术在甲状腺代谢领域取得的进展,特别关注了该技术在定量分析甲状腺疾病相关分子方面的应用。