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Genetic Basis of Neural Tube Defects

机译:神经管缺陷的遗传基础

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Neural tube defects (NTDs) represent a common group of severe congenital malformations of the central nervous system. They result from failure of neural tube closure during early embryonic life. Their etiology is complex, involving environmental and genetic factors that interact to modulate the incidence and severity of the developing phenotype. Despite a long history of etiologic studies, the molecular and cellular pathogenic mechanisms underlining NTDs remain poorly understood. The major epidemiologic finding in NTDs is the protective effect of perinatal folic acid supplementation that reduces their risk by 60%-70%. Genetic studies in NTDs have focused mainly on folate-related genes and identified a few significant associations between variants in these genes and an increased risk for NTDs. The candidate gene approach investigating genes involved in neurulation and inferred from animal models has faced limited success in identifying major causative genes predisposing to NTDs. However, we are witnessing a rapid and impressive progress in understanding the genetic basis of NTDs, based mainly on the development of whole genome innovative technologies and the powerful tool of animal models.
机译:神经管缺损(NTD)代表了一组常见的中枢神经系统严重先天畸形。它们是由于胚胎早期生命期神经管闭合失败而导致的。他们的病因很复杂,涉及环境和遗传因素,这些因素相互作用来调节发育表型的发生率和严重性。尽管病因学研究已有很长的历史,但对NTD的分子和细胞致病机制仍知之甚少。 NTDs的主要流行病学发现是围产期补充叶酸可降低60%-70%的风险。 NTDs的遗传研究主要集中在叶酸相关基因上,并发现了这些基因的变异与NTD风险增加之间的一些重要关联。从动物模型中推论出的与神经相关的基因研究的候选基因方法在鉴定导致NTD的主要致病基因方面所获得的成功有限。但是,我们目睹了在理解NTD的遗传基础方面迅速而令人印象深刻的进步,这主要是基于全基因组创新技术的发展和强大的动物模型工具。

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