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基于 DNA 的非病毒基因治疗——具有挑战性但有前景。

DNA-Based Nonviral Gene Therapy─Challenging but Promising.

机构信息

Institute of Nano Biomedicine and Engineering, Department of Instrument Science and Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

Institute of Basic Medicine and Cancer (IBMC), Chinese Academy of Sciences, The Cancer Hospital of the University of Chinese Academy of Sciences, Hangzhou 310022, China.

出版信息

Mol Pharm. 2024 Feb 5;21(2):427-453. doi: 10.1021/acs.molpharmaceut.3c00907. Epub 2024 Jan 10.

Abstract

Over the past decades, significant progress has been made in utilizing nucleic acids, including DNA and RNA molecules, for therapeutic purposes. For DNA molecules, although various DNA delivery systems have been established, viral vector systems are the go-to choice for large-scale commercial applications. However, viral systems have certain disadvantages such as immune response, limited payload capacity, insertional mutagenesis and pre-existing immunity. In contrast, nonviral systems are less immunogenic, not size limited, safer, and easier for manufacturing compared with viral systems. What's more, nonviral DNA vectors have demonstrated their capacity to mediate specific protein expression for diverse therapeutic objectives containing a wide range of diseases such as cancer, rare diseases, neurodegenerative diseases, and infectious diseases, yielding promising therapeutic outcomes. However, exogenous plasmid DNA is prone to degrade and has poor immunogenicity . Thus, various strategies have been developed: (i) designing novel plasmids with special structures, (ii) optimizing plasmid sequences for higher expression, and (iii) developing more efficient nonviral DNA delivery systems. Based on these strategies, many interesting clinical results have been reported. This Review discusses the development of DNA-based nonviral gene therapy, including novel plasmids, nonviral delivery systems, clinical advances, and prospects. These developments hold great potential for enhancing the efficacy and safety of nonviral gene therapy and expanding its applications in the treatment of various diseases.

摘要

在过去几十年中,人们在利用核酸(包括 DNA 和 RNA 分子)进行治疗目的方面取得了重大进展。对于 DNA 分子,尽管已经建立了各种 DNA 传递系统,但病毒载体系统是大规模商业应用的首选。然而,病毒系统存在一些缺点,如免疫反应、有限的载量能力、插入突变和预先存在的免疫。相比之下,非病毒系统的免疫原性较低,不受大小限制,比病毒系统更安全,更容易制造。此外,非病毒 DNA 载体已被证明能够介导特定蛋白质的表达,用于多种治疗目标,包括癌症、罕见病、神经退行性疾病和传染病等广泛的疾病,产生了有希望的治疗结果。然而,外源性质粒 DNA 容易降解,免疫原性差。因此,已经开发了各种策略:(i)设计具有特殊结构的新型质粒,(ii)优化质粒序列以提高表达水平,以及(iii)开发更有效的非病毒 DNA 传递系统。基于这些策略,已经报道了许多有趣的临床结果。本综述讨论了基于 DNA 的非病毒基因治疗的发展,包括新型质粒、非病毒传递系统、临床进展和前景。这些发展为提高非病毒基因治疗的疗效和安全性以及扩大其在治疗各种疾病中的应用提供了巨大的潜力。

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