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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Novel reducible linear L-lysine-modified copolymers as efficient nonviral vectors
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Novel reducible linear L-lysine-modified copolymers as efficient nonviral vectors

机译:新型可还原的线性L-赖氨酸改性共聚物作为有效的非病毒载体

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The development of biodegradable gene delivery systems with high transfection efficiencies is paramount to the clinical translation of nonviral gene carriers. Therefore, to produce a biocompatible, reducible, effective and non-toxic gene delivery system, we have designed and synthesized novel reducible linear L-lysine modified copolymers (LLCs) as an alternative to high molecular weight poly(L-lysine) (PLL). The molecular weight (MW) of the copolymers was found to be similar to 3.2 kDa with a polydispersity index of similar to 1.2. Gel retardation assays showed complete condensation of DNA at N/P ratios greater than 20/1 and exceptional LLC/pDNA polyplex stability during incubation with DNase I. Release of DNA from the polyplexes only occurred in the presence of the reducing agent dithiothreitol (DTT). The particle sizes of LLC/pDNA polyplexes were found to be between 100 and 231 nm with surface charges of 0.8-17 mV respectively. The transfection efficiencies of the polyplexes as determined with a luciferase assay showed that LLC polyplexes produced five times higher transfection efficiencies in HDF cells, three times higher transfection efficiencies in MCF-7 cells, and four times higher transfection efficiencies in MA cells as compared to the optimal PLL control. The LLC/pDNA polyplexes showed significantly lower cytotoxicities as compared to the control in HDF, MCF-7 and MA cells at certain N/P ratios. Therefore, these results suggest that these novel LLCs are efficient, reducible and biocompatible polymers for nonviral gene delivery.
机译:具有高转染效率的可生物降解基因递送系统的开发对于非病毒基因载体的临床翻译至关重要。因此,为了产生生物相容,可还原,有效且无毒的基因递送系统,我们设计并合成了新型可还原线性L-赖氨酸改性共聚物(LLC),以替代高分子量聚L-赖氨酸(PLL)。 。发现该共聚物的分子量(MW)类似于3.2kDa,多分散指数类似于1.2。凝胶阻滞试验显示,以DNase I孵育时,N / P比率大于20/1的DNA完全缩合,并且LLC / pDNA复合物具有出色的稳定性。DNA从复合物中的释放仅在还原剂二硫苏糖醇(DTT)存在下发生。发现LLC / pDNA多链体的粒径在100至231nm之间,表面电荷分别为0.8-17mV。与荧光素酶测定法相比,多聚体的转染效率表明,LLC多聚体在HDF细胞中产生的转染效率高五倍,在MCF-7细胞中产生三倍的转染效率,在MAF细胞中产生四倍的转染效率。最佳PLL控制。与HDF,MCF-7和MA细胞中某些N / P比的对照相比,LLC / pDNA多聚体显示出明显更低的细胞毒性。因此,这些结果表明,这些新颖的LLC是用于非病毒基因递送的有效,可还原和生物相容的聚合物。

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