首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Addition of pluronics? to reducible disulfide-bond-containing Pluronic?-PEI-SS specifically enhances circulation time in vivo and transfection efficiency in vitro
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Addition of pluronics? to reducible disulfide-bond-containing Pluronic?-PEI-SS specifically enhances circulation time in vivo and transfection efficiency in vitro

机译:除了普朗尼克斯?还原可还原的含二硫键的Pluronic?-PEI-SS可显着提高体内循环时间和体外转染效率

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摘要

To improve the circulation time and transfection efficiency of the polyplexes used in gene delivery, a series of Pluronic?/Pluronic?F127- PEI-SS/pDNA complexes (PFPS/pDNA), based on the addition of different kinds of Pluronics? to the reducible disulfide-bonds-containing Pluronic?F127- PEI-SS/pDNA (FPS/pDNA) polyplexes, was prepared and evaluated in Bcap and Hela cells in vitro and in vivo. The addition of Pluronics? with molecular weights and hydrophilic-lipophilic balance (HLBs) different from that in the FPS/pDNA complex resulted in five PFPS(1-5)/pDNA complexes, and the correlation between the structure of the free Pluronic? and the properties of the PFPS/pDNA complexes was investigated. The addition of Pluronics? resulted in slightly larger or same-sized nanoparticles of PFPS/pDNA at a constant N/P ratio. The PFPS copolymer displayed strong stability against DNase I digestion and serum degradation. PFPS-4 containing added Pluronic? L35, with an intermediate HLB of 19, showed a much higher transfection efficiency and less cytotoxicity than FPS or PEI-25 kDa in vitro. PFPS-4 also exhibited a considerably longer blood circulation time than FPS or PEI-25 kDa in vivo in mice, indicating that the addition of an intermediate Pluronic? can enhance the transfection efficiency of gene delivery systems.
机译:为了改善用于基因递送的多聚体的循环时间和转染效率,基于添加了不同种类的Pluronics ?,一系列Pluronic?/ Pluronic?F127-PEI-SS / pDNA复合物(PFPS / pDNA)。制备了可还原的含二硫键的Pluronic?F127-PEI-SS / pDNA(FPS / pDNA)多聚体,并在Bcap和Hela细胞中进行了体内和体外评估。除了Pluronics?分子量和亲水亲脂平衡(HLBs)与FPS / pDNA复合物中的分子量不同,产生了五种PFPS(1-5)/ pDNA复合物,并且游离Pluronic?结构之间存在相关性?并研究了PFPS / pDNA复合物的性质。除了Pluronics?会以恒定的N / P比产生稍大或相同尺寸的PFPS / pDNA纳米颗粒。 PFPS共聚物对DNase I的消化和血清降解表现出很强的稳定性。 PFPS-4含有添加的Pluronic吗? L35,中间HLB为19,在体外显示比FPS或PEI-25 kDa更高的转染效率和更低的细胞毒性。与小鼠体内的FPS或PEI-25 kDa相比,PFPS-4的血液循环时间也长得多,这表明添加了中间体Pluronic?。可以提高基因传递系统的转染效率。

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