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治愈的障碍:克服病毒和非病毒基因治疗的细胞屏障

Hurdles to healing: Overcoming cellular barriers for viral and nonviral gene therapy.

作者信息

Honrath Steffen, Burger Michael, Leroux Jean-Christophe

机构信息

ETH Zurich, Department of Chemistry and Applied Biosciences, Institute of Pharmaceutical Sciences, Vladimir-Prelog-Weg 3, 8093 Zurich, Switzerland.

ETH Zurich, Department of Chemistry and Applied Biosciences, Institute of Pharmaceutical Sciences, Vladimir-Prelog-Weg 3, 8093 Zurich, Switzerland.

出版信息

Int J Pharm. 2025 Apr 15;674:125470. doi: 10.1016/j.ijpharm.2025.125470. Epub 2025 Mar 18.

Abstract

Gene delivery offers great potential for treating various diseases, yet its success requires overcoming several biological barriers. These hurdles span from extracellular degradation, reaching the target cells, and inefficient cellular uptake to endosomal entrapment, cytoplasmic transport, nuclear entry, and transcription limitations. Viruses and non-viral vectors deal with these barriers via different mechanisms. Viral vectors, such as adenoviruses, adeno-associated viruses, and lentiviruses use natural mechanisms to efficiently deliver genetic material but face limitations including immunogenicity, cargo capacity, and production complexity. Nonviral vectors, including lipid nanoparticles, polymers, and protein-based systems, offer scalable and safer alternatives but often fall short in overcoming intracellular barriers and achieving high transfection efficiencies. Recent advancements in vector engineering have partially overcome several of these challenges. Ionizable lipids improve endosomal escape while minimizing toxicity. Biodegradable polymers balance efficacy with safety, and engineered protein systems, inspired by viral or bacterial entry mechanisms, integrate multifunctionality for enhanced delivery. Despite these advances, challenges, particularly in achieving robust in vivo translatability, scalability, and reduced immunogenicity, remain. This review synthesizes current knowledge of cellular barriers and the approaches to overcome them, providing a roadmap for designing more efficient gene delivery systems. By addressing these barriers, the field can advance toward safer, and more effective therapies.

摘要

基因递送在治疗各种疾病方面具有巨大潜力,但其成功需要克服几个生物学障碍。这些障碍涵盖从细胞外降解、到达靶细胞、低效的细胞摄取到内体截留、细胞质运输、核进入以及转录限制等方面。病毒载体和非病毒载体通过不同机制应对这些障碍。病毒载体,如腺病毒、腺相关病毒和慢病毒,利用天然机制有效地递送遗传物质,但面临包括免疫原性、载量和生产复杂性等限制。非病毒载体,包括脂质纳米颗粒、聚合物和基于蛋白质的系统,提供了可扩展且更安全的替代方案,但在克服细胞内障碍和实现高转染效率方面往往不足。载体工程的最新进展部分克服了其中一些挑战。可电离脂质改善内体逃逸同时将毒性降至最低。可生物降解聚合物在疗效和安全性之间取得平衡,并且受病毒或细菌进入机制启发的工程化蛋白质系统整合多功能性以增强递送。尽管取得了这些进展,但挑战仍然存在,特别是在实现强大的体内可转化性、可扩展性和降低免疫原性方面。本综述综合了当前关于细胞障碍及其克服方法的知识,为设计更有效的基因递送系统提供了路线图。通过解决这些障碍,该领域可以朝着更安全、更有效的治疗方法迈进。

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