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Co-transfection gene delivery of dendritic cells induced effective lymph node targeting and anti-tumor vaccination

机译:树突状细胞的共转染基因传递诱导有效的淋巴结靶向和抗肿瘤疫苗接种

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摘要

Purpose: Successful genetically engineered Dendritic Cell (DC) can enhance DC's antigen presentation and lymph node migration. The present study aims to genetically engineer a DC using an efficient non-viral gene delivery vector to induce a highly efficient antigen presentation and lymph node targeting in vivo. Methods: Spermine-dextran (SD), a cationic polysaccharide vector, was used to prepare a gene delivery system for DC engineering. Transfection efficiency, nuclear trafficking, and safety of the SD/DNA complex were evaluated. A vaccine prepared by engineering DC with SD/gp100, a plasmid encoding melanoma-associated antigen, was injected subcutaneously into mice to evaluate the tumor suppression. The migration of the engineered DCs was also evaluated in vitro and in vivo. Results: SD/DNA complex has a better transfection behavior in vitro than commercially purchased reagents. The DC vaccine co-transfected with plasmid coding CCR7, a chemokine receptor essential for DC migration, and plasmid coding gp100 displayed superior tumor suppression than that with plasmid coding gp100 alone. Migration assay demonstrated that DC transfected with SD/CCR7 can promote DC migration capacity. Conclusions: The study is the first to report the application of nonviral vector SD to co-transfect DC with gp100 and CCR7-coding plasmid to induce both the capacity of antigen presentation and lymph node targeting.
机译:目的:成功的基因工程树突状细胞(DC)可以增强DC的抗原呈递和淋巴结迁移。本研究旨在使用有效的非病毒基因递送载体对DC进行遗传工程改造,以诱导高效的抗原呈递和体内淋巴结靶向。方法:使用阳离子多糖载体精胺-葡聚糖(SD)制备用于直流工程的基因递送系统。评估了转染效率,核运输和SD / DNA复合物的安全性。通过用SD / gp100(编码黑素瘤相关抗原的质粒)工程改造DC制备的疫苗被皮下注射到小鼠中,以评估其肿瘤抑制率。还在体外和体内评估了工程DC的迁移。结果:SD / DNA复合物在体外具有比市售试剂更好的转染行为。与单独编码gp100的质粒相比,与编码CCR7(对DC迁移必不可少的趋化因子受体)的质粒共转染的DC疫苗对肿瘤的抑制作用更好。迁移分析表明,用SD / CCR7转染的DC可以促进DC迁移能力。结论:该研究首次报道了非病毒载体SD与gp100和CCR7编码质粒共转染DC的应用,以诱导抗原呈递和淋巴结靶向能力。

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