Faculty of Medicine, Imperial College London, Hammersmith Hospital Campus, London, UK.
Int J Dev Neurosci. 2023 Nov;83(7):581-599. doi: 10.1002/jdn.10290. Epub 2023 Aug 13.
Cortical development depends on neuronal migration of both excitatory and inhibitory interneurons. Neuronal migration disorders (NMDs) are conditions characterised by anatomical cortical defects leading to varying degrees of neurocognitive impairment, developmental delay and seizures. Refractory epilepsy affects 15 million people worldwide, and it is thought that cortical developmental disorders are responsible for 25% of childhood cases. However, little is known about the epidemiology of these disorders, nor are their aetiologies fully understood, though many are associated with sporadic genetic mutations. In this review, we aim to highlight X-linked NMDs including lissencephaly, periventricular nodular heterotopia and polymicrogyria because of their mostly familial inheritance pattern. We focus on the most prominent genes responsible: including DCX, ARX, FLNA, FMR1, L1CAM, SRPX2, DDX3X, NSHDL, CUL4B and OFD1, outlining what is known about their prevalence among NMDs, and the underlying pathophysiology. X-linked disorders are important to recognise clinically, as females often have milder phenotypes. Consequently, there is a greater chance they survive to reproductive age and risk passing the mutations down. Effective genetic screening is important to prevent and treat these conditions, and for this, we need to know gene mutations and have a clear understanding of the function of the genes involved. This review summarises the knowledge base and provides clear direction for future work by both scientists and clinicians alike.
皮质发育依赖于兴奋性和抑制性中间神经元的神经元迁移。神经元迁移障碍(NMD)是一种以解剖学皮质缺陷为特征的疾病,导致不同程度的神经认知障碍、发育迟缓、癫痫发作。难治性癫痫影响全球 1500 万人,皮质发育障碍被认为占儿童病例的 25%。然而,人们对这些疾病的流行病学知之甚少,其病因也不完全清楚,尽管许多与散发性基因突变有关。在这篇综述中,我们旨在强调 X 连锁 NMD,包括无脑回畸形、脑室周围结节性异位和多小脑回畸形,因为它们主要具有家族遗传模式。我们专注于最突出的相关基因:包括 DCX、ARX、FLNA、FMR1、L1CAM、SRPX2、DDX3X、NSHDL、CUL4B 和 OFD1,概述了它们在 NMD 中的流行程度以及潜在的病理生理学。X 连锁疾病在临床上很重要,因为女性的表型通常较轻。因此,她们更有可能存活到生育年龄,并将突变遗传下去。有效的遗传筛查对于预防和治疗这些疾病非常重要,为此,我们需要了解基因突变,并清楚地了解相关基因的功能。这篇综述总结了知识库,并为科学家和临床医生提供了明确的未来工作方向。