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鸡眼中前段发育的分析。

An analysis of anterior segment development in the chicken eye.

作者信息

Trejo-Reveles Violeta, McTeir Lynn, Summers Kim, Rainger Joe

机构信息

The Roslin Institute Chicken Embryology (RICE) group, The Roslin Institute and Royal Dick School of Veterinary Studies, University of Edinburgh, Easter Bush Campus, Midlothian, EH25 9RG, UK.

Mater Research Institute-UQ, Translational Research Institute, 37 Kent St, Woolloongabba, QLD 4102, Australia.

出版信息

Mech Dev. 2018 Apr;150:42-49. doi: 10.1016/j.mod.2018.03.001. Epub 2018 Mar 8.

Abstract

Precise anterior segment (AS) development in the vertebrate eye is essential for maintaining ocular health throughout life. Disruptions to genetic programs can lead to severe structural AS disorders at birth, while more subtle AS defects may disrupt the drainage of ocular fluids and cause dysregulation of intraocular pressure homeostasis, leading to progressive vision loss. To date, the mouse has served as the major model to study AS development and pathogenesis. Here we present an accurate histological atlas of chick AS formation throughout eye development, with a focus on the formation of drainage structures. We performed expression analyses for a panel of known AS disorder genes, and showed that chick PAX6 was localized to cells of neural retina and surface ectoderm derived structures, displaying remarkable similarity to the mouse. We provide a comparison to mouse and humans for chick AS developmental sequences and structures and confirm that AS development shares common features in all three species, although the main AS structures in the chick are developed prior to hatching. These features enable the unique experimental advantages inherent to chick embryos, and we therefore propose the chick as an appropriate additional model for AS development and disease.

摘要

脊椎动物眼睛前段(AS)的精确发育对于维持一生的眼部健康至关重要。基因程序的破坏可导致出生时严重的结构性AS疾病,而更细微的AS缺陷可能会扰乱眼内液体的引流并导致眼内压稳态失调,从而导致进行性视力丧失。迄今为止,小鼠一直是研究AS发育和发病机制的主要模型。在此,我们展示了一份贯穿眼睛发育全过程的鸡AS形成的精确组织学图谱,重点关注引流结构的形成。我们对一组已知的AS疾病基因进行了表达分析,结果表明鸡的PAX6定位于神经视网膜和表面外胚层衍生结构的细胞中,与小鼠表现出显著相似性。我们对鸡、小鼠和人类的AS发育序列及结构进行了比较,并证实尽管鸡的主要AS结构在孵化前就已发育,但AS发育在这三个物种中具有共同特征。这些特征赋予了鸡胚胎独特的实验优势,因此我们提议将鸡作为AS发育和疾病研究的合适补充模型。

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