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Imidazole-grafted chitosan-mediated gene delivery: in vitro study on transfection, intracellular trafficking and degradation.

机译:咪唑嫁接的壳聚糖介导的基因传递:转染,细胞内运输和降解的体外研究。

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摘要

Aim: To study the mechanism of transfection mediated by imidazole-grafted chitosan (CHimi) nanoparticles, to propose new strategies to control and improve the expression of a delivered gene in the context of regenerative medicine. Methods: Biochemical and microscopy methods were used to establish transfection efficiency and nanoparticle intracellular trafficking. The role of CHimi and degree of N-acetylation (DA) on transfection was explored. Results: CHimi was found to promote the expression of a delivered gene during a minimum 7-day period. Additionally, the production of a protein of interest could be upheld by consecutive transfections, without compromising cell viability. Transfection was found to be a time-dependent process, requiring CHimi?DNA complex disassembling. The DA was found to have an impact on transfection kinetics in line with the observation that the rate of lysozyme-mediated nanoparticle degradation increases with the polymer DA. Conclusion: The adjustment of the CH degradation rate can be used as a tool for tuning the expression of a gene delivered by CH-based nanoparticle systems.
机译:目的:研究咪唑接枝的壳聚糖(CHimi)纳米粒子介导的转染机制,提出新的策略来控制和改善再生医学背景下所传递基因的表达。方法:使用生化和显微镜方法确定转染效率和纳米颗粒细胞内运输。探索了CHimi和N-乙酰化程度(DA)在转染中的作用。结果:发现CHimi可在至少7天的时间内促进传递基因的表达。另外,可以通过连续转染维持目的蛋白的产生,而不会损害细胞活力。发现转染是一个时间依赖性的过程,需要分解CHimi?DNA复合物。发现DA对转染动力学有影响,这与溶菌酶介导的纳米颗粒降解速率随聚合物DA增加而观察到的一致。结论:CH降解速率的调节可用作调节基于CH的纳米粒子系统传递的基因表达的工具。

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