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眼轴长度的遗传学决定因素:从儿童小眼症到高度近视。

The Genetic Determinants of Axial Length: From Microphthalmia to High Myopia in Childhood.

机构信息

Institute of Ophthalmology, University College London, London, United Kingdom; email:

The Francis Crick Institute, London, United Kingdom.

出版信息

Annu Rev Genomics Hum Genet. 2023 Aug 25;24:177-202. doi: 10.1146/annurev-genom-102722-090617.

Abstract

The axial length of the eye is critical for normal visual function by enabling light to precisely focus on the retina. The mean axial length of the adult human eye is 23.5 mm, but the molecular mechanisms regulating ocular axial length remain poorly understood. Underdevelopment can lead to microphthalmia (defined as a small eye with an axial length of less than 19 mm at 1 year of age or less than 21 mm in adulthood) within the first trimester of pregnancy. However, continued overgrowth can lead to axial high myopia (an enlarged eye with an axial length of 26.5 mm or more) at any age. Both conditions show high genetic and phenotypic heterogeneity associated with significant visual morbidity worldwide. More than 90 genes can contribute to microphthalmia, and several hundred genes are associated with myopia, yet diagnostic yields are low. Crucially, the genetic pathways underpinning the specification of eye size are only now being discovered, with evidence suggesting that shared molecular pathways regulate under- or overgrowth of the eye. Improving our mechanistic understanding of axial length determination will help better inform us of genotype-phenotype correlations in both microphthalmia and myopia, dissect gene-environment interactions in myopia, and develop postnatal therapies that may influence overall eye growth.

摘要

眼球的轴向长度对于正常的视觉功能至关重要,它能使光线精确地聚焦在视网膜上。成年人眼球的平均轴向长度为 23.5 毫米,但调节眼球轴向长度的分子机制仍知之甚少。在妊娠的头三个月,如果发育不良,会导致小眼症(定义为 1 岁时眼睛较小,轴向长度小于 19 毫米,或成年后小于 21 毫米)。然而,持续过度生长会导致任何年龄都可能出现轴性高度近视(眼球增大,轴向长度为 26.5 毫米或更长)。这两种情况都表现出高度的遗传和表型异质性,与全球范围内显著的视觉发病率有关。超过 90 种基因可导致小眼症,数百种基因与近视有关,但诊断率仍然较低。至关重要的是,目前才刚刚发现决定眼睛大小的遗传途径,有证据表明,共享的分子途径调节眼睛的过度生长或发育不良。改善我们对轴向长度决定的机制理解,将有助于更好地了解小眼症和近视的基因型-表型相关性,剖析近视中的基因-环境相互作用,并开发可能影响整体眼球生长的产后治疗方法。

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