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眼纤毛病:治疗方法的遗传和机制见解。

Ocular Ciliopathies: Genetic and Mechanistic Insights into Developing Therapies.

机构信息

School of Optometry, Massachusetts College of Pharmacy and Health Sciences University, Worcester, MA, United States.

UMASS Medical School, Worcester, MA 01605, United States.

出版信息

Curr Med Chem. 2019;26(17):3120-3131. doi: 10.2174/0929867325666180917102557.

Abstract

Developing suitable medicines for genetic diseases requires a detailed understanding of not only the pathways that cause the disease, but also the identification of the genetic components involved in disease manifestation. This article focuses on the complexities associated with ocular ciliopathies - a class of debilitating disorders of the eye caused by ciliary dysfunction. Ciliated cell types have been identified in both the anterior and posterior segments of the eye. Photoreceptors (rods and cones) are the most studied ciliated neurons in the retina, which is located in the posterior eye. The photoreceptors contain a specialized lightsensing outer segment, or cilium. Any defects in the development or maintenance of the outer segment can result in severe retinal ciliopathies, such as retinitis pigmentosa and Leber congenital amaurosis. A role of cilia in the cell types involved in regulating aqueous fluid outflow in the anterior segment of the eye has also been recognized. Defects in these cell types are frequently associated with some forms of glaucoma. Here, we will discuss the significance of understanding the genetic heterogeneity and the pathogenesis of ocular ciliopathies to develop suitable treatment strategies for these blinding disorders.

摘要

开发适用于遗传疾病的药物不仅需要深入了解导致疾病的途径,还需要识别与疾病表现相关的遗传成分。本文重点介绍了眼纤毛疾病的复杂性,这是一类由纤毛功能障碍引起的眼部致残疾病。眼的前节和后节中都已经鉴定出纤毛细胞类型。感光器(视杆和视锥)是视网膜中研究最多的纤毛神经元,视网膜位于眼的后节。感光器包含专门的光感外节或纤毛。外节的发育或维持出现任何缺陷都会导致严重的视网膜纤毛疾病,例如色素性视网膜炎和莱伯先天性黑蒙。纤毛在参与调节眼前节房水流出的细胞类型中的作用也已得到认可。这些细胞类型的缺陷常与某些形式的青光眼有关。在这里,我们将讨论了解眼纤毛疾病的遗传异质性和发病机制对于开发这些致盲疾病的合适治疗策略的重要意义。

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本文引用的文献

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Gene therapy comes of age.基因治疗走向成熟。
Science. 2018 Jan 12;359(6372). doi: 10.1126/science.aan4672.
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Genes and molecular pathways underpinning ciliopathies.纤毛病的基因和分子通路
Nat Rev Mol Cell Biol. 2017 Sep;18(9):533-547. doi: 10.1038/nrm.2017.60. Epub 2017 Jul 12.
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