首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >On the kinetics of polyplex endocytic trafficking: implications for gene delivery vector design.
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On the kinetics of polyplex endocytic trafficking: implications for gene delivery vector design.

机译:关于多体内吞运输的动力学:对基因传递载体设计的影响。

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Synthetic gene therapy vectors must be designed to safely and efficiently escort DNA from outside the cell to the nucleus and to overcome several physical barriers that are obstacles to internalization, escape from endocytic vesicles, movement through the cytoplasm, and transport into the nucleus. By providing a firm foundation for polymer design, a quantitative understanding of polymer-mediated gene delivery mechanisms may allow more efficient and timely design of new vectors. We have used a flow-cytometry-based assay for investigating endocytic trafficking by quantitation of polyplex pH microenvironments. We investigated polyethylenimine (PEI)- and poly-L-lysine (PLL)-DNA trafficking, with and without the endosomotropic agent chloroquine. PLL-DNA complexes appear to be localized to early endocytic vesicles and are not trafficked to lysosomes. Further, chloroquine appears to facilitate PLL-mediated gene delivery by a mechanism other than buffering of endocytic compartments. Additionally, PEI does not appear to buffer endocytic compartments, but requires exposure to an acidic environment for efficient gene delivery.
机译:合成基因治疗载体必须设计成能够安全有效地将DNA从细胞外部护送到核中,并克服几种物理障碍,这些障碍是内在化,从内吞小泡中逃逸,穿过细胞质移动并转运到核中的障碍。通过为聚合物设计提供坚实的基础,对聚合物介导的基因传递机制的定量理解可以使新载体的设计更为有效和及时。我们已经使用了基于流式细胞仪的分析方法,通过定量多重pH pH微环境来研究内吞运输。我们调查了聚乙烯亚胺(PEI)-和聚L-赖氨酸(PLL)-DNA贩运,有和没有内溶剂氯喹。 PLL-DNA复合物似乎位于早期的内吞囊泡,而不是贩运到溶酶体。此外,氯喹似乎通过缓冲内吞区室以外的机制促进PLL介导的基因递送。另外,PEI似乎不能缓冲内吞区室,但需要暴露于酸性环境才能有效地传递基因。

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