Patient stem cell-derived in vitro disease models for developing novel therapies of retinal ciliopathies.

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology Current Topics in Developmental Biology Pub Date : 2023-01-01 Epub Date: 2023-11-04 DOI:10.1016/bs.ctdb.2023.09.003
Kamil Kruczek, Anand Swaroop
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Abstract

Primary cilia are specialized organelles on the surface of almost all cells in vertebrate tissues and are primarily involved in the detection of extracellular stimuli. In retinal photoreceptors, cilia are uniquely modified to form outer segments containing components required for the detection of light in stacks of membrane discs. Not surprisingly, vision impairment is a frequent phenotype associated with ciliopathies, a heterogeneous class of conditions caused by mutations in proteins required for formation, maintenance and/or function of primary cilia. Traditionally, immortalized cell lines and model organisms have been used to provide insights into the biology of ciliopathies. The advent of methods for reprogramming human somatic cells into pluripotent stem cells has enabled the generation of in vitro disease models directly from patients suffering from ciliopathies. Such models help us in investigating pathological mechanisms specific to human physiology and in developing novel therapeutic approaches. In this article, we review current protocols to differentiate human pluripotent stem cells into retinal cell types, and discuss how these cellular and/or organoid models can be utilized to interrogate pathobiology of ciliopathies affecting the retina and for testing prospective treatments.

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患者干细胞衍生的体外疾病模型用于开发视网膜纤毛病的新疗法。
初级纤毛是脊椎动物组织中几乎所有细胞表面的特化细胞器,主要参与检测细胞外刺激。在视网膜光感受器中,纤毛经过独特的修饰,形成外部片段,其中包含检测膜盘堆叠中的光所需的成分。毫不奇怪,视力障碍是与纤毛病相关的一种常见表型,纤毛病是由初级纤毛形成、维持和/或功能所需的蛋白质突变引起的一种异质性疾病。传统上,永生化细胞系和模式生物已被用于提供对纤毛病生物学的见解。将人类体细胞重新编程为多能干细胞的方法的出现,使得直接从患有纤毛病的患者身上产生体外疾病模型成为可能。这样的模型有助于我们在研究病理机制具体到人类生理学和开发新的治疗方法。在本文中,我们回顾了目前将人类多能干细胞分化为视网膜细胞类型的方案,并讨论了如何利用这些细胞和/或类器官模型来询问影响视网膜的纤毛病的病理生物学和测试前瞻性治疗方法。
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CiteScore
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发文量
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