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Augmented anti-tumor therapy through natural targetability of macrophages genetically engineered by NK4 plasmid DNA.

机译:通过NK4质粒DNA基因工程改造的巨噬细胞的天然靶向性增强了抗肿瘤治疗。

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The objective of this study is to genetically engineer macrophages (Mphi) for biological activation and evaluate their anti-tumor activity in a tumor-bearing mouse model. Mouse peritoneal Mphi were incubated on the surface of a culture dish which had been coated with the complex of a cationized dextran and luciferase plasmid DNA complex plus a cell adhesion protein, Pronectin for gene transfection (reverse transfection). When compared with the conventional transfection where Mphi were transfected in the medium containing the complex, the level of gene expression by the reverse method was significantly high and the time period of gene expression was prolonged. Confocal microscopic observation revealed that the plasmid DNA was localized in the cell nucleus to a higher extent by the reverse transfection method. Following the reverse transfection of Mphi by the plasmid DNA of a hepatocyte growth factor antagonist (NK4) complexed with the cationized dextran, the NK4 protein was secreted at a higher amount for a longer time period in contrast to the conventional transfection of free plasmid DNA. The NK4-transfected Mphi exhibited a stronger inhibition activity for in vitro growth of Meth-A fibrosarcoma cells. When injected intravenously into mice carrying a mass of Meth-A tumor cells, the Mphi engineered were accumulated in the tumor tissue and showed significant anti-tumor activity. It is concluded that the Mphi injected functioned as the natural carrier of tumor targeting for anti-tumor NK4 molecules, resulting in enhanced suppression of tumor growth at a high selectivity.
机译:这项研究的目的是对巨噬细胞(Mphi)进行基因工程改造以使其具有生物激活作用,并评估其在荷瘤小鼠模型中的抗肿瘤活性。将小鼠腹膜Mphi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复合物的复合物加上细胞粘附蛋白Pronectin进行基因转染(反向转染)。与在含有复合物的培养基中转染了Mphi的常规转染相比,通过逆向方法的基因表达水平显着较高,并且基因表达的时间延长。共聚焦显微镜观察表明,通过反向转染方法,质粒DNA在细胞核中的定位更高。与常规的游离质粒DNA转染相比,在与阳离子化葡聚糖复合的肝细胞生长因子拮抗剂(NK4)的质粒DNA逆转Mphi后,NK4蛋白以更高的量分泌了更长的时间。 NK4转染的Mphi对Meth-A纤维肉瘤细胞的体外生长表现出更强的抑制活性。当将其静脉注射到携带大量Meth-A肿瘤细胞的小鼠体内时,工程化的Mphi积累在肿瘤组织中并显示出显着的抗肿瘤活性。结论是注射的Mphi可以作为抗肿瘤NK4分子靶向肿瘤的天然载体,从而以较高的选择性增强对肿瘤生长的抑制作用。

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