首页> 外文期刊>Journal of drug targeting >Enhanced gene expression and reduced toxicity in mice using polyplexes of low-molecular-weight poly(ethylene imine) for pulmonary gene delivery.
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Enhanced gene expression and reduced toxicity in mice using polyplexes of low-molecular-weight poly(ethylene imine) for pulmonary gene delivery.

机译:使用低分子量聚(亚乙基亚胺)的复合体进行肺部基因传递,可增强小鼠的基因表达并降低毒性。

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摘要

The aim of this study was to elicit improved gene expression and decreased cytotoxicity for pulmonary gene therapy by replacing the commonly used carrier 25 kDa branched poly(ethylene imine) (BPEI) by two PEI derivatives, low-molecular-weight PEI (LMWPEI) and polyethylene glycol-grafted PEI (PEGPEI). All polymers were shown to condense DNA to spherical particles of approximately 100 nm. Biocompatibility was investigated in vitro and in vivo. Although transfection was less efficient with LMWPEI-DNA in vitro, this polyplex caused the highest luciferase expression in the mouse lung after intratracheal instillation. While PEGPEI luciferase expression in vitro was approximately three times higher when compared to BPEI, a transfection rate at the level of naked DNA was observed in vivo. LMWPEI polyplexes were located in both the bronchial and alveolar cells, whereas BPEI polyplexes were mainly detected in bronchial cells. LMWPEI combines low cytotoxicity with high transfection efficiency in the mouse lung in vivo, rendering it a promising strategy for pulmonary gene delivery.
机译:这项研究的目的是通过用两种PEI衍生物,低分子量PEI(LMWPEI)和PPE替代常用的25 kDa支链聚乙烯亚胺(BPEI)载体,从而提高基因表达并降低肺细胞治疗的细胞毒性。聚乙二醇接枝的PEI(PEGPEI)。显示所有聚合物都将DNA凝聚成大约100 nm的球形颗粒。在体外和体内研究了生物相容性。尽管在体外用LMWPEI-DNA转染效率较低,但这种复合物在气管内滴注后在小鼠肺中引起了最高的荧光素酶表达。尽管与BPEI相比,PEPGEI荧光素酶在体外的表达高出约三倍,但在体内却观察到裸DNA水平的转染率。 LMWPEI复合体位于支气管和肺泡细胞中,而BPEI复合体主要在支气管细胞中检测到。 LMWPEI将低细胞毒性与高转染效率结合在一起,在小鼠肺部体内,使其成为有前景的肺部基因递送策略。

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