Inborn errors of metabolism leading to neuronal migration defects

被引:15
作者
Schiller, Stina [1 ]
Rosewich, Hendrik [1 ]
Gruenewald, Stephanie [2 ,3 ]
Gaertner, Jutta [1 ]
机构
[1] Georg August Univ Gottingen, Univ Med Ctr Gottingen, Dept Paediat & Adolescent Med, Gottingen, Germany
[2] UCL, Great Ormond St Hosp, Metab Unit, London, England
[3] UCL, Inst Child Hlth, London, England
关键词
cerebral cortex development; neuronal migration disorders; neurometabolism; peroxisome biogenesis disorders; peroxisomal ss-oxidation defects; O-glycosylation disorders; ZELLWEGER SPECTRUM; FUMARIC ACIDURIA; DISORDERS; BRAIN; GLYCOSYLATION; DISEASE; DYSTROGLYCAN; PEROXISOMES; DEFICIENCY; DIAGNOSIS;
D O I
10.1002/jimd.12194
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The development and organisation of the human brain start in the embryonic stage and is a highly complex orchestrated process. It depends on series of cellular mechanisms that are precisely regulated by multiple proteins, signalling pathways and non-protein-coding genes. A crucial process during cerebral cortex development is the migration of nascent neuronal cells to their appropriate positions and their associated differentiation into layer-specific neurons. Neuronal migration defects (NMD) comprise a heterogeneous group of neurodevelopmental disorders including monogenetic disorders and residual syndromes due to damaging factors during prenatal development like infections, maternal diabetes mellitus or phenylketonuria, trauma, and drug use. Multifactorial causes are also possible. Classification into lissencephaly, polymicrogyria, schizencephaly, and neuronal heterotopia is based on the visible morphologic cortex anomalies. Characteristic clinical features of NMDs are severe psychomotor developmental delay, severe intellectual disability, intractable epilepsy, and dysmorphisms. Neurometabolic disorders only form a small subgroup within the large group of NMDs. The prototypes are peroxisomal biogenesis disorders, peroxisomal ss-oxidation defects and congenital disorders of O-glycosylation. The rapid evolution of biotechnology has resulted in an ongoing identification of metabolic and non-metabolic disease genes for NMDs. Nevertheless, we are far away from understanding the specific role of cortical genes and metabolites on spatial and temporal regulation of human cortex development and associated malformations. This limited understanding of the pathogenesis hinders the attempt for therapeutic approaches. In this article, we provide an overview of the most important cortical malformations and potential underlying neurometabolic disorders.
引用
收藏
页码:145 / 155
页数:11
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