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Augmented anti-tumor effect of dendritic cells genetically engineered by interleukin-12 plasmid DNA

机译:白介素12质粒DNA基因改造的树突状细胞的增强抗肿瘤作用

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摘要

The objective of this study was to genetically engineer dendritic cells (DC) for biological activation and evaluate their anti-tumor activity in a tumor-bearing mouse model. Mouse DC were incubated on the surface of culture dishes which had been coated with the complexes of a cationized dextran and luciferase plasmid DNA complexes plus a cell adhesion protein, Pronectin?, for gene transfection (reverse transfection). When compared with the conventional transfection where DC were transfected in the medium containing the complexes, the level of gene expression by the reverse method was significantly higher and the time period of gene expression was prolonged. Following the reverse transfection of DC by a plasmid DNA of mouse interleukin-12 (mIL-12) complexed with the cationized dextran, the mIL-12 protein was secreted at higher amounts for a longer time period. When injected intratumorally into mice carrying a mass of B16 tumor cells, the DC genetically activated showed significant anti-tumor activity.
机译:这项研究的目的是对树突状细胞(DC)进行基因工程改造以进行生物激活,并评估其在荷瘤小鼠模型中的抗肿瘤活性。将小鼠DC在培养皿的表面上温育,该培养皿已用阳离子化葡聚糖和荧光素酶质粒DNA复合物的复合物以及细胞粘附蛋白Pronectin 2进行了基因转染(反向转染)。与在含有复合物的培养基中转染DC的常规转染相比,通过逆向方法的基因表达水平明显更高,并且基因表达的时间延长。用与阳离子化葡聚糖复合的小鼠白细胞介素12(mIL-12)质粒DNA逆转DC后,mIL-12蛋白分泌的时间更长。当肿瘤内注射到携带大量B16肿瘤细胞的小鼠体内时,经基因激活的DC表现出显着的抗肿瘤活性。

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