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首页> 外文期刊>Radiation and Environmental Biophysics >Anti-tumor effect of ~(125)I-UdR in combination with Egr-1 promoter-based IFNγ gene therapy in vivo
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Anti-tumor effect of ~(125)I-UdR in combination with Egr-1 promoter-based IFNγ gene therapy in vivo

机译:〜(125)I-UdR与基于Egr-1启动子的IFNγ基因治疗联合在体内的抗肿瘤作用

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Although ~(125)I-UdR treatment of malignant tumors in animal models and patients has achieved a certain effect, the short half-life of ~(125)I-UdR in vivo and its cellular uptake only in S phase of the cell cycle are limiting factors with regard to tumor eradication, and therefore its combination with other applications is a promising strategy in cancer therapy. In this study, we show that ~(125)I-UdR radionuclide therapy in combination with Egr-1 promoter-based IFNγ gene therapy is more effective than ~(125)I-UdR therapy alone in suppressing tumor growth and extending survival duration in mice bearing H22 hepatomas. Combined therapy could significantly inhibit cell proliferation and tumor angiogenesis, induce apoptosis and enhance cytotoxic activities of splenic CTL of the mice. Our results suggest that ~(125)I-UdR in combination with Egr-1 promoter-based IFNγ gene therapy may provide novel approaches for cancer treatment.
机译:尽管〜(125)I-UdR在动物模型和患者中治疗恶性肿瘤已取得了一定的效果,但〜(125)I-UdR的体内半衰期短且仅在细胞周期的S期才被细胞吸收对于根除肿瘤而言,它们是限制因素,因此在肿瘤治疗中将其与其他应用结合是一种有前途的策略。在这项研究中,我们表明〜(125)I-UdR放射性核素疗法与基于Egr-1启动子的IFNγ基因疗法相结合比单独使用〜(125)I-UdR疗法抑制肿瘤生长和延长生存期更有效。 H22肝癌的小鼠。联合治疗可明显抑制小鼠脾脏CTL的细胞增殖和肿瘤血管生成,诱导其凋亡并增强其细胞毒活性。我们的结果表明,〜(125)I-UdR与基于Egr-1启动子的IFNγ基因治疗相结合可能为癌症治疗提供新的方法。

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