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有机酸血症和氨基酸病的神经影像学表现。

Neuroimaging Findings of Organic Acidemias and Aminoacidopathies.

机构信息

From the Division of Pediatric Radiology and Pediatric Neuroradiology, Russell H. Morgan Department of Radiology and Radiological Science (N.R., S.F.C., T.A.G.M.H., B.P.S.), and McKusick-Nathans Institute of Genetic Medicine, Department of Pediatrics (H.J.V.), The Johns Hopkins University School of Medicine, Charlotte R. Bloomberg Children's Center Bldg, Sheikh Zayed Tower, Room 4174, 1800 Orleans St, Baltimore, MD 21287-0842; Università degli Studi di Milano, Postgraduation School in Radiodiagnostics, Milan, Italy (S.F.C.); Department of Neurogenetics, Kennedy Krieger Institute, Baltimore, Md (H.J.V.); and Department of Pediatric Neurology, University Children's Hospital of Zurich, Zurich, Switzerland (E.B.).

出版信息

Radiographics. 2018 May-Jun;38(3):912-931. doi: 10.1148/rg.2018170042.

Abstract

Although individual cases of inherited metabolic disorders are rare, overall they account for a substantial number of disorders affecting the central nervous system. Organic acidemias and aminoacidopathies include a variety of inborn errors of metabolism that are caused by defects in the intermediary metabolic pathways of carbohydrates, amino acids, and fatty acid oxidation. These defects can lead to the abnormal accumulation of organic acids and amino acids in multiple organs, including the brain. Early diagnosis is mandatory to initiate therapy and prevent permanent long-term neurologic impairments or death. Neuroimaging findings can be nonspecific, and metabolism- and genetics-based laboratory investigations are needed to confirm the diagnosis. However, neuroimaging has a key role in guiding the diagnostic workup. The findings at conventional and advanced magnetic resonance imaging may suggest the correct diagnosis, help narrow the differential diagnosis, and consequently facilitate early initiation of targeted metabolism- and genetics-based laboratory investigations and treatment. Neuroimaging may be especially helpful for distinguishing organic acidemias and aminoacidopathies from other more common diseases with similar manifestations, such as hypoxic-ischemic injury and neonatal sepsis. Therefore, it is important that radiologists, neuroradiologists, pediatric neuroradiologists, and clinicians are familiar with the neuroimaging findings of organic acidemias and aminoacidopathies. RSNA, 2018.

摘要

尽管遗传性代谢紊乱的个别病例较为罕见,但它们在影响中枢神经系统的疾病中占相当大的比例。有机酸血症和氨基酸病包括各种先天性代谢错误,这些错误是由碳水化合物、氨基酸和脂肪酸氧化的中间代谢途径的缺陷引起的。这些缺陷可导致多种器官(包括大脑)中有机酸和氨基酸的异常积聚。早期诊断对于开始治疗和预防永久性长期神经损伤或死亡至关重要。神经影像学表现可能不具有特异性,需要进行基于代谢和遗传学的实验室检查以确认诊断。然而,神经影像学在指导诊断性检查中具有关键作用。常规和高级磁共振成像的表现可能提示正确的诊断,有助于缩小鉴别诊断范围,并因此促进早期进行针对代谢和遗传学的实验室检查和治疗。神经影像学可能特别有助于将有机酸血症和氨基酸病与其他具有相似表现的更常见疾病(如缺氧缺血性损伤和新生儿败血症)区分开来。因此,放射科医生、神经放射科医生、儿科神经放射科医生和临床医生熟悉有机酸血症和氨基酸病的神经影像学表现非常重要。RSNA,2018 年。

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