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用于DNA递送的聚合物。

Polymers for DNA delivery.

作者信息

Eliyahu H, Barenholz Y, Domb A J

机构信息

Department of Medicinal Chemistry and Natural Products, School of Pharmacy, Jerusalem, Israel.

出版信息

Molecules. 2005 Jan 31;10(1):34-64. doi: 10.3390/10010034.

Abstract

Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medicine. One of the main applications is DNA or RNA delivery for gene therapy purposes. Gene therapy, an approach for treatment or prevention of diseases associated with defective gene expression, involves the insertion of a therapeutic gene into cells, followed by expression and production of the required proteins. This approach enables replacement of damaged genes or expression inhibition of undesired genes. Following two decades of research, there are two major methods for delivery of genes. The first method, considered the dominant approach, utilizes viral vectors and is generally an efficient tool of transfection. Attempts, however, to resolve drawbacks related with viral vectors (e.g., high risk of mutagenicity, immunogenicity, low production yield, limited gene size, etc.), led to the development of an alternative method, which makes use of non-viral vectors. This review describes non-viral gene delivery vectors, termed "self-assembled" systems, and are based on cationic molecules, which form spontaneous complexes with negatively charged nucleic acids. It introduces the most important cationic polymers used for gene delivery. A transition from in vitro to in vivo gene delivery is also presented, with an emphasis on the obstacles to achieve successful transfection in vivo.

摘要

核酸递送在基础科学、生物技术、农业和医学等领域有许多应用。主要应用之一是用于基因治疗目的的DNA或RNA递送。基因治疗是一种治疗或预防与基因表达缺陷相关疾病的方法,它涉及将治疗性基因插入细胞,随后表达并产生所需的蛋白质。这种方法能够替换受损基因或抑制不需要的基因的表达。经过二十年的研究,有两种主要的基因递送方法。第一种方法被认为是主要方法,它利用病毒载体,通常是一种高效的转染工具。然而,为了解决与病毒载体相关的缺点(例如,高致突变性风险、免疫原性、低产量、有限的基因大小等),导致了另一种方法的发展,即利用非病毒载体。本综述描述了非病毒基因递送载体,称为“自组装”系统,它们基于阳离子分子,能与带负电荷的核酸形成自发复合物。它介绍了用于基因递送的最重要的阳离子聚合物。还介绍了从体外基因递送向体内基因递送的转变,重点阐述了在体内实现成功转染的障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c54/6147627/74a656795424/molecules-10-00034-g001.jpg

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