利伯氏先天性黑朦的非病毒基因治疗:进展和可能性。

Nanomedicine (London, England) Pub Date : 2025-02-01 Epub Date: 2024-12-20 DOI:10.1080/17435889.2024.2443387
Latifat Abdulsalam, James Mordecai, Irshad Ahmad
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引用次数: 0

摘要

利伯氏先天性黑朦(LCA)是一组罕见且普遍存在的视网膜遗传性疾病,从儿童早期开始导致严重的视力丧失。由于最近对LCA遗传基础的了解有所进展,有针对性的治疗干预已成为可能。虽然病毒载体在基因传递方面显示出有效性,但它们存在安全性、载货能力低以及随机基因组整合的可能性等挑战。非病毒基因治疗是治疗导致LCA的潜在基因突变的一种更安全、更灵活的选择。非病毒基因传递方法,如无机纳米颗粒、聚合物基传递系统和脂质纳米颗粒,绕过了免疫原性和基因组整合的风险,有可能为患者提供更通用和个性化的治疗。本文综述了LCA的遗传背景,强调了所涉及的突变,并探讨了各种正在开发的非病毒基因传递方法。它还重点介绍了最近在动物模型和临床试验中对LCA的非病毒基因治疗的研究。它展示了基因治疗的未来前景,包括整合新兴技术,如CRISPR-Cas9,跨学科合作,个性化医疗和伦理考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-viral gene therapy for Leber's congenital amaurosis: progress and possibilities.

Leber's congenital amaurosis (LCA) represents a set of rare and pervasive hereditary conditions of the retina that cause severe vision loss starting in early childhood. Targeted treatment intervention has become possible thanks to recent advances in understanding LCA genetic basis. While viral vectors have shown efficacy in gene delivery, they present challenges related to safety, low cargo capacity, and the potential for random genomic integration. Non-viral gene therapy is a safer and more flexible alternative to treating the underlying genetic mutation causing LCA. Non-viral gene delivery methods, such as inorganic nanoparticles, polymer-based delivery systems, and lipid-based nanoparticles, bypass the risks of immunogenicity and genomic integration, potentially offering a more versatile and personalized treatment for patients. This review explores the genetic background of LCA, emphasizing the mutations involved, and explores diverse non-viral gene delivery methods being developed. It also highlights recent studies on non-viral gene therapy for LCA in animal models and clinical trials. It presents future perspectives for gene therapy, including integrating emerging technologies like CRISPR-Cas9, interdisciplinary collaborations, personalized medicine, and ethical considerations.

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