Department of Clinical Chemistry, Emma Children's Hospital, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
J Inherit Metab Dis. 2010 Oct;33(5):479-94. doi: 10.1007/s10545-010-9104-8. Epub 2010 May 20.
Oxidation of fatty acids in mitochondria is a key physiological process in higher eukaryotes including humans. The importance of the mitochondrial beta-oxidation system in humans is exemplified by the existence of a group of genetic diseases in man caused by an impairment in the mitochondrial oxidation of fatty acids. Identification of patients with a defect in mitochondrial beta-oxidation has long remained notoriously difficult, but the introduction of tandem-mass spectrometry in laboratories for genetic metabolic diseases has revolutionalized the field by allowing the rapid and sensitive analysis of acylcarnitines. Equally important is that much progress has been made with respect to the development of specific enzyme assays to identify the enzyme defect in patients subsequently followed by genetic analysis. In this review, we will describe the current state of knowledge in the field of fatty acid oxidation enzymology and its application to the follow-up analysis of positive neonatal screening results.
在线粒体中氧化脂肪酸是包括人类在内的高等真核生物的一个关键生理过程。线粒体β-氧化系统在人类中的重要性体现在一组由脂肪酸线粒体氧化损伤引起的人类遗传疾病的存在。线粒体β-氧化缺陷患者的鉴定长期以来一直非常困难,但串联质谱在遗传代谢疾病实验室中的引入通过允许快速和敏感的酰基肉碱分析彻底改变了这一领域。同样重要的是,在开发特定的酶测定以鉴定随后进行遗传分析的患者中的酶缺陷方面已经取得了很大进展。在这篇综述中,我们将描述脂肪酸氧化酶学领域的最新知识状况及其在阳性新生儿筛查结果后续分析中的应用。