首页> 外文期刊>Gene therapy >Anti-metastatic gene therapy utilizing subcutaneous inoculation of EC-SOD gene transduced autologous fibroblast suppressed lung metastasis of Meth-A cells and 3LL cells in mice.
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Anti-metastatic gene therapy utilizing subcutaneous inoculation of EC-SOD gene transduced autologous fibroblast suppressed lung metastasis of Meth-A cells and 3LL cells in mice.

机译:利用EC-SOD基因转导的自体成纤维细胞皮下接种的抗转移基因疗法抑制了小鼠Meth-A细胞和3LL细胞的肺转移。

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摘要

We have previously reported that superoxide stimulates the motility of tumor cells and the administration of Cu-Zn superoxide dismutase (SOD) significantly suppresses metastasis. However, ideally, anti-metastatic therapy should be long-lasting, systemically effective and have low toxicity. The half-life of Cu-Zn SOD in plasma is so short that it cannot provide long-lasting effects. Therefore, in this study we have developed a gene therapy in a mouse model utilizing extracellular SOD (EC-SOD), which is the most prevalent SOD isoenzyme in extracellular fluids. We retrovirally transfected fibroblasts (syngeneic) with the EC-SOD gene and established EC-SOD-secreting fibroblasts. Inoculation of EC-SOD-secreting fibroblasts suppressed both artificial and spontaneous metastatic lung nodules in mouse metastasis models. These data indicate the feasibility of anti-metastatic gene therapy utilizing the EC-SOD gene.
机译:先前我们曾报道过氧化物会刺激肿瘤细胞的运动,而铜锌超氧化物歧化酶(SOD)的施用会显着抑制转移。但是,理想情况下,抗转移疗法应持久,全身有效且毒性低。血浆中Cu-Zn SOD的半衰期很短,无法提供持久的作用。因此,在这项研究中,我们开发了一种利用细胞外SOD(EC-SOD)在小鼠模型中进行基因治疗的方法,ECD是细胞外液中最普遍的SOD同工酶。我们用EC-SOD基因逆转录转染了成纤维细胞(同系),并建立了分泌EC-SOD的成纤维细胞。在小鼠转移模型中,接种分泌EC-SOD的成纤维细胞可抑制人工和自发转移性肺结节。这些数据表明利用EC-SOD基因进行抗转移基因治疗的可行性。

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