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首页> 外文期刊>Biomaterials >Targeted minicircle DNA delivery using folate-poly(ethylene glycol)-polyethylenimine as non-viral carrier.
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Targeted minicircle DNA delivery using folate-poly(ethylene glycol)-polyethylenimine as non-viral carrier.

机译:使用叶酸-聚(乙二醇)-聚乙烯亚胺作为非病毒载体进行靶向微环DNA递送。

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Targeted gene delivery systems have attracted great attention due to their potential in directing the therapeutic genes to the target cells. However, due to their low efficiency, most of the successful applications of polymeric vectors have been focused on genes which can achieve robust expression. Minicircle DNA (mcDNA) is a powerful candidate in terms of improving gene expression and prolonging the lifespan of gene expression. In this study, we have combined folate/poly(ethylene glycol) modified polyethylenimine and mcDNA as a new tumor gene delivery system. We found that folate-labeled polyplexes were homogenous, with a size ranging from 60 to 85 nm. mcDNA increased folate-labeled vector based gene expression 2-8 fold in folate receptor-positive cells. Results of folic acid competition assay indicated that mcDNA mediated by folate-labeled vector were internalized into cells through receptor-mediated endocytosis. The investigation of the endocytosis pathway of the polyplexes showed that a large portion of them escaped from endo/lysosome and the polyplexes were associated before being separated in the nucleus. Furthermore, in vivo optical imaging and luciferase assays demonstrated that systemic delivery of the folate-labeled polyplexes resulted in preferential accumulation of transgenes in folate receptor-positive tumors, and mcDNA mediated approach achieved 2.3 fold higher gene expressions in tumors than conventional plasmid. Cytotoxicity assays showed that PEG-shielding of the polyplexes reduced the toxicity of PEI.
机译:靶向基因递送系统由于其将治疗基因引导至靶细胞的潜力而备受关注。然而,由于它们的低效率,聚合物载体的大多数成功应用都集中在可以实现稳定表达的基因上。在改善基因表达和延长基因表达寿命方面,小圆环DNA(mcDNA)是强大的候选者。在这项研究中,我们结合了叶酸/聚乙二醇修饰的聚乙烯亚胺和mcDNA作为新的肿瘤基因递送系统。我们发现叶酸标记的多链体是同质的,大小范围为60至85 nm。在叶酸受体阳性细胞中,mcDNA使叶酸标记的基于载体的基因表达增加2-8倍。叶酸竞争试验结果表明,叶酸标记的载体介导的mcDNA通过受体介导的内吞作用被内化到细胞中。对多聚体的内吞途径的研究表明,它们中的很大一部分从内溶酶体/溶酶体中逸出,并且多聚体在被分离到细胞核之前就已经结合了。此外,体内光学成像和荧光素酶测定法表明,叶酸标记的多链体的系统性递送导致叶酸受体阳性肿瘤中转基因的优先积累,并且mcDNA介导的方法在肿瘤中的基因表达比常规质粒高2.3倍。细胞毒性试验表明,多聚体的PEG保护作用降低了PEI的毒性。

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