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The Molecular Basis of Human Anophthalmia and Microphthalmia

机译:人类无眼症和小眼症的分子基础

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摘要

Human eye development is coordinated through an extensive network of genetic signalling pathways. Disruption of key regulatory genes in the early stages of eye development can result in aborted eye formation, resulting in an absent eye (anophthalmia) or a small underdeveloped eye (microphthalmia) phenotype. Anophthalmia and microphthalmia (AM) are part of the same clinical spectrum and have high genetic heterogeneity, with >90 identified associated genes. By understanding the roles of these genes in development, including their temporal expression, the phenotypic variation associated with AM can be better understood, improving diagnosis and management. This review describes the genetic and structural basis of eye development, focusing on the function of key genes known to be associated with AM. In addition, we highlight some promising avenues of research involving multiomic approaches and disease modelling with induced pluripotent stem cell (iPSC) technology, which will aid in developing novel therapies.
机译:人眼的发育通过广泛的遗传信号通路网络进行协调。眼睛发育早期关键调节基因的破坏会导致流产的眼睛形成,从而导致眼睛缺失(无眼症)或较小的眼睛发育不足(小眼症)表型。无眼症和小眼症(AM)是同一临床领域的一部分,具有高度的遗传异质性,已鉴定出90多个相关基因。通过了解这些基因在发育中的作用,包括它们的时间表达,可以更好地了解与AM相关的表型变异,从而改善诊断和管理。这篇综述描述了眼睛发育的遗传和结构基础,重点研究了已知与AM相关的关键基因的功能。此外,我们重点介绍了一些有前途的研究途径,包括多组学方法和诱导性多能干细胞(iPSC)技术对疾病的建模,这将有助于开发新的疗法。

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