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Microparticle-Mediated Gene Delivery for the Enhanced Expression of a 19-KDa Fragment of Merozoite Surface Protein 1 of Plasmodium falciparum

机译:微粒介导的基因传递的恶性疟原虫裂殖子表面蛋白1的19 KDa片段的增强表达。

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摘要

The 19 kDa carboxyl-terminal fragment of merozoite surface protein 1 (MSP1_(19)) is a major component of the invasion-inhibitory response in individual immunity to malaria. A novel ultrasonic atomization approach for the formulation of biodegradable poly(lactic-co-glycolic acid) (PLGA) microparticles of malaria DNA vaccines encoding MSP1_(19) is presented here. After condensing the plasmid DNA (pDNA) molecules with a cationic polymer polyethylenimine (PEI), a 40 kHz ultrasonic atomization frequency was used to formulate PLGA microparticles at a flow rate of 18 mL h~(-1). High levels of gene expression and moderate cytotoxicity in COS-7 cells were achieved with the condensed pDNA at a nitrogen to phosphate (NIP) ratio of 20, thus demonstrating enhanced cellular uptake and expression of the transgene. The ability of the microparticles to convey pDNA was examined by characterizing the formulated microparticles. The microparticles displayed Z-average hydrodynamic diameters of 1.50-2.10 μm and zeta potentials of 17.8-23.2 mV. The encapsulation efficiencies were between. 78 and 83%, and 76 and 85% of the embedded malaria pDNA molecules were released under physiological conditions in vitro. These results indicate that PLGA-mediated microparticles can be employed as potential gene delivery systems to antigen-presenting cells in the prevention of malaria.
机译:裂殖子表面蛋白1(MSP1_(19))的19 kDa羧基末端片段是个体对疟疾的免疫抑制反应的主要组成部分。本文介绍了一种新颖的超声雾化方法,用于配制编码MSP1_(19)的疟疾DNA疫苗的可生物降解的聚乳酸-乙醇酸(PLGA)微粒。用阳离子聚合物聚乙烯亚胺(PEI)浓缩质粒DNA(pDNA)分子后,使用40 kHz超声雾化频率以18 mL h〜(-1)的流量配制PLGA微粒。浓缩的pDNA在氮与磷酸盐(NIP)之比为20的情况下,在COS-7细胞中实现了高水平的基因表达和中等的细胞毒性,从而证明了细胞摄取和转基因表达的增强。通过表征配制的微粒,检查了微粒传递pDNA的能力。微粒的Z平均流体力学直径为1.50-2.10μm,ζ电位为17.8-23.2 mV。封装效率介于两者之间。在体外生理条件下释放了78%和83%的嵌入疟疾pDNA分子,以及76%和85%。这些结果表明,在预防疟疾中,PLGA介导的微粒可以用作潜在的向抗原呈递细胞的基因递送系统。

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