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What cerebellar malformations tell us about cerebellar development

机译:小脑畸形告诉我们关于小脑发展

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摘要

Structural birth defects of the cerebellum, or cerebellar malformations, in humans, have long been recognized. However, until recently there has been little progress in elucidating their developmental pathogenesis. Innovations in brain imaging and human genetic technologies over the last 2 decades have led to better classifications of these disorders and identification of several causative genes. In contrast, cerebellar malformations in model organisms, particularly mice, have been the focus of intense study for more than 70 years. As a result, many of the molecular, genetic and cellular programs that drive formation of the cerebellum have been delineated in mice. In this review, we overview the basic epochs and key molecular regulators of the developmental programs that build the structure of the mouse cerebellum. This mouse-centric approach has been a useful to interpret the developmental pathogenesis of human cerebellar malformations. However, it is becoming apparent that we actually know very little regarding the specifics of human cerebellar development beyond what is inferred from mice. A better understanding of human cerebellar development will not only facilitate improved diagnosis of human cerebellar malformations, but also lead to the development of treatment paradigms for these important neurodevelopmental disorders.
机译:长期以来,人类的患者出生缺陷或人类畸形的缺陷已经得到了认可。然而,直到最近在阐明其发育病发病时几乎没有进展。过去2年的脑成像和人类遗传技术的创新导致了这些疾病的更好分类和鉴定了几种致病基因。相比之下,模型生物,特别是小鼠的小脑畸形一直是70多年的激烈研究的重点。结果,许多分子,遗传和细胞程序,其在小鼠中已经描绘了细胞的形成。在本次审查中,我们概述了构建小鼠结构的发展方案的基本时期和关键分子调节因子。这种以鼠标为中心的方法是解释人体小脑畸形的发育性发病机制是有用的。然而,它变得显而易见,我们实际上很少了解人们小脑发展的细节,超出了从小鼠推断的。更好地了解人体小脑发育不仅会促进改善人体小脑畸形的诊断,而且还导致这些重要的神经发育障碍治疗范式的发展。

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