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Formulation and in vitro transfection efficiency of poly (D L-lactideco-glycolide) microspheres containing plasmid DNA for gene delivery

机译:含有质粒DNA的聚(DL-丙交酯-乙交酯)微球的配制和体外转染效率

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摘要

The stability, in vitro release, and in vitro cell transfection efficiency of plasmid DNA (pDNA) poly (D,L.-lactide-co-glycolide) (PLGA) microsphere formulations were investigated. PLGA microspheres containing free and polylysine (PLL)-complexed pDNA were prepared by a water-oil-water solvent extraction/evaporation technique. Encapsulation enhanced the retention of the supereoiled structure of pDNA as determined by gel electrophoresis. PLL complexation of pDNA prior to encapsulation increased both the stability of the supercoiled form and the encapsulation efficiency. Free pDNA was completely degraded after exposure to DNase while encapsulation protected the pDNA from enzymatic degradation. Rapid initial in vitro release of pDNA was obtained from microspheres containing free pDNA. while the release from microspheres containing PLL-complexed pDNA was sustained for more than 42 days. Bioactivity of encapsulated pDNA determined by in vitro cell transfection using Chinese hamster ovary cells (CHO) showed that the bioactivity of encapsulated pDNA was retained in both formulations but to a greater extent with PLL-complexed pDNA microspheres. These results demonstrated that PLGA microspheres could be used to formulate a controlledrelease delivery system for pDNA that can protect the pDNA from DNase degradation without loss of functional activity.
机译:研究了质粒DNA(pDNA)聚(D,L.-丙交酯-共-乙交酯)(PLGA)微球制剂的稳定性,体外释放和体外细胞转染效率。通过水-油-水-溶剂萃取/蒸发技术制备了含有游离和聚赖氨酸(PLL)复合pDNA的PLGA微球。通过凝胶电泳测定,包封增强了pDNA超微结构的保留。封装前pDNA的PLL络合增加了超螺旋形式的稳定性和封装效率。暴露于DNase后,游离的pDNA完全降解,而封装保护pDNA免受酶促降解。从含有游离pDNA的微球中可以快速体外释放pDNA。而含有PLL复合pDNA的微球的释放持续超过42天。通过使用中国仓鼠卵巢细胞(CHO)进行体外细胞转染确定的封装pDNA的生物活性表明,两种配方均保留了封装pDNA的生物活性,但在PLL复杂的pDNA微球中更大程度地保留了封装的pDNA。这些结果表明,PLGA微球可用于为pDNA配制控释递送系统,该系统可以保护pDNA免受DNase降解,而不会丧失功能活性。

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