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遗传性视网膜疾病的分子监测和分析的临床意义。

The clinical implications of molecular monitoring and analyses of inherited retinal diseases.

机构信息

a Genetics Department-research Unit , Institute of Ophthalmology 'Conde de Valenciana' , Mexico City , Mexico.

b Biochemistry Department, Faculty of Medicine , UNAM , Mexico City , Mexico.

出版信息

Expert Rev Mol Diagn. 2017 Nov;17(11):1009-1021. doi: 10.1080/14737159.2017.1384314. Epub 2017 Oct 5.

Abstract

Retinal dystrophies (RDs) are the most common cause of inherited blindness and one of the most genetically heterogeneous human diseases. RDs arise from mutations in genes involved in development and function of photoreceptors or other retinal cells. Identification of the genetic defect causing RD allows accurate diagnosis, prognosis, and counseling in affected patients. Molecular diagnosis is a tremendous challenge in RDs due to their locus and phenotypic heterogeneity. As conventional DNA sequencing approaches are impractical in such situation, Next Generation Sequencing (NGS)-based protocols are needed to identify RD-causing mutations. This is being accomplished by sequencing RD gene panels or by whole exome or whole genome sequencing approaches. Areas covered: This review discusses the current strategies for molecular diagnosis in RDs including their advantages and limitations, as well as their utility in diagnosis of non-syndromic versus syndromic RDs. Results of ongoing gene therapy protocols in RDs are also presented. Expert commentary: Molecular diagnosis in RD improves the medical management of patients. Importantly, demand for molecular screening for RDs is greatly expanding not only as a result of increasing development and availability of NGS technologies, but also of the growing number of gene-based clinical trials offering a potential treatment to patients.

摘要

视网膜营养不良(RDs)是遗传性失明的最常见原因,也是人类最具遗传异质性的疾病之一。RDs 是由参与光感受器或其他视网膜细胞发育和功能的基因突变引起的。确定导致 RD 的遗传缺陷可在受影响的患者中进行准确的诊断、预后和咨询。由于 RD 的位置和表型异质性,分子诊断是一个巨大的挑战。由于传统的 DNA 测序方法在这种情况下不切实际,因此需要基于下一代测序(NGS)的方案来识别 RD 致病突变。这是通过对 RD 基因进行测序来实现的,或者通过全外显子或全基因组测序方法来实现。涵盖领域:这篇综述讨论了 RD 中分子诊断的当前策略,包括它们的优缺点,以及它们在非综合征性与综合征性 RD 诊断中的应用。还介绍了正在进行的 RD 基因治疗方案的结果。专家评论:RD 中的分子诊断可改善患者的医疗管理。重要的是,对 RD 进行分子筛查的需求正在大幅增加,这不仅是由于 NGS 技术的不断发展和可用性,还因为越来越多的基于基因的临床试验为患者提供了潜在的治疗方法。

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