基于阳离子聚合物的基因传递:摄取和细胞内运输

Y. Ho, H. Too
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引用次数: 0

摘要

迄今为止,低转染效率仍然是聚合物基基因传递的主要缺点。包括干细胞、成纤维细胞和神经元在内的许多细胞类型都被聚合物基因载体转染得很差,其高毒性严重限制了它们在基因传递中的应用。由于这些载体具有低免疫原性、易于制造和可扩展性,因此不断努力确定有效转染的细胞屏障。本文综述了聚合物- dna复合物(polyplexes)的摄取机制、它们的内体逃逸、胞质转运和pDNA的核进入等方面的研究现状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CATIONIC POLYMER BASED GENE DELIVERY: UPTAKE AND INTRACELLULAR TRAFFICKING
To date, low transfection efficiency remains the major drawback of polymer based gene delivery. Many cell types including stem cells, fibroblast and neurons are known to be poorly transfected with polymer based gene carriers and the high toxicity severely restrict their utility in gene delivery. Continual efforts are made to identify cellular barriers to efficient transfection as these carriers have low immunogenicity, ease of manufacturing and scalability. Here, we summarize the current status of understanding on uptake mechanism of polymer-DNA complexes (polyplexes), their endosomal escape, cytosolic transport and nuclear entry of pDNA.
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