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质谱技术如何彻底改变新生儿筛查。

How mass spectrometry revolutionized newborn screening.

作者信息

Millington David S

机构信息

Duke University Medical Center, Department of Pediatrics, Durham, NC, USA.

出版信息

J Mass Spectrom Adv Clin Lab. 2024 Jan 30;32:1-10. doi: 10.1016/j.jmsacl.2024.01.006. eCollection 2024 Apr.

Abstract

This article offers a personal account of a remarkable journey spanning over 30 years of applied mass spectrometry in a clinical setting. It begins with the author's inspiration from a clinician's story of rescuing a child from near death with a revolutionary therapeutic intervention. Motivated by this experience, the author delved into the field of chemistry and mass spectrometry to solve an analytical challenge. The breakthrough came with the development of the first front-line diagnostic test performed by MS/MS, which focused on analyzing acylcarnitines to detect and diagnose inherited disorders related to fatty acid and branched-chain amino acid catabolism. Building upon this success, the author expanded the application of the method to dried blood spots, incorporating additional analytical components such as essential amino acids. The result was a groundbreaking multiplex assay capable of screening newborns for more than 30 inherited metabolic conditions with just one test. This novel approach laid the foundation for a targeted metabolomics platform that facilitated the identification of new animal models of metabolic disease through screening the offspring of genetically modified adults. The development and utilization of MS/MS with UPLC has led to the creation of new assays for biomarkers of metabolic disease, benefiting both the diagnosis and therapeutic monitoring of these conditions. The article provides compelling examples from the author's laboratory, highlighting the value and vast applications of these methods in the field of metabolic disease research.

摘要

本文讲述了在临床环境中应用质谱技术超过30年的非凡历程。文章开篇讲述了作者从一位临床医生的故事中获得的灵感,这位医生通过一种革命性的治疗干预将一名儿童从死亡边缘拯救回来。受此经历的激励,作者深入化学和质谱领域以解决一个分析难题。突破来自于首次由串联质谱(MS/MS)进行的一线诊断测试的开发,该测试专注于分析酰基肉碱以检测和诊断与脂肪酸和支链氨基酸分解代谢相关的遗传性疾病。基于这一成功,作者将该方法的应用扩展到干血斑,纳入了诸如必需氨基酸等额外的分析成分。结果是一种开创性的多重检测方法,仅通过一次检测就能对新生儿进行30多种遗传性代谢疾病的筛查。这种新颖的方法为一个靶向代谢组学平台奠定了基础,该平台通过筛选转基因成年动物的后代促进了代谢疾病新动物模型的识别。超高效液相色谱串联质谱(UPLC-MS/MS)的开发和应用导致了代谢疾病生物标志物新检测方法的创建,有益于这些疾病的诊断和治疗监测。文章提供了作者实验室的引人注目的例子,突出了这些方法在代谢疾病研究领域的价值和广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c789/10847993/206a5a780f04/gr1.jpg

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