Carrella Sabrina, Indrieri Alessia, Franco Brunella, Banfi Sandro
Telethon Institute of Genetics and Medicine (TIGEM), Pozzuoli, Italy.
Medical Genetics, Department of Precision Medicine, University of Campania "Luigi Vanvitelli", Naples, Italy.
Front Neurosci. 2020 Sep 24;14:588234. doi: 10.3389/fnins.2020.588234. eCollection 2020.
Gene therapy is proving to be an effective approach to treat or prevent ocular diseases ensuring a targeted, stable, and regulated introduction of exogenous genetic material with therapeutic action. Retinal diseases can be broadly categorized into two groups, namely monogenic and complex (multifactorial) forms. The high genetic heterogeneity of monogenic forms represents a significant limitation to the application of gene-specific therapeutic strategies for a significant fraction of patients. Therefore, mutation-independent therapeutic strategies, acting on common pathways that underly retinal damage, are gaining interest as complementary/alternative approaches for retinal diseases. This review will provide an overview of mutation-independent strategies that rely on the modulation in the retina of key genes regulating such crucial degenerative pathways. In particular, we will describe how gene-based approaches explore the use of neurotrophic factors, microRNAs (miRNAs), genome editing and optogenetics in order to restore/prolong visual function in both outer and inner retinal diseases. We predict that the exploitation of gene delivery procedures applied to mutation/gene independent approaches may provide the answer to the unmet therapeutic need of a large fraction of patients with genetically heterogeneous and complex retinal diseases.
基因治疗已被证明是一种治疗或预防眼部疾病的有效方法,可确保外源遗传物质以靶向、稳定和可控的方式导入并发挥治疗作用。视网膜疾病大致可分为两类,即单基因形式和复杂(多因素)形式。单基因形式的高度遗传异质性对相当一部分患者应用基因特异性治疗策略构成了重大限制。因此,作用于视网膜损伤共同通路的非突变依赖性治疗策略作为视网膜疾病的补充/替代方法正受到越来越多的关注。本综述将概述非突变依赖性策略,这些策略依赖于调节视网膜中调控此类关键退行性通路的关键基因。特别是,我们将描述基于基因的方法如何探索使用神经营养因子、微小RNA(miRNA)、基因组编辑和光遗传学,以恢复/延长外层和内层视网膜疾病中的视觉功能。我们预测,将基因递送程序应用于非突变/基因依赖性方法可能为大部分患有遗传异质性和复杂性视网膜疾病的患者未满足的治疗需求提供解决方案。