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首页> 外文期刊>American Journal of Cancer Research >Three-dimensional assessment of bystander effects of mesenchymal stem cells carrying a cytosine deaminase gene on glioma cells
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Three-dimensional assessment of bystander effects of mesenchymal stem cells carrying a cytosine deaminase gene on glioma cells

机译:携带胞嘧啶脱氨酶基因的间充质干细胞对神经胶质瘤细胞的旁观者效应的三维评估

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摘要

Stem cells carrying a suicide gene have emerged as therapeutic candidates for their cytotoxic bystander effects on neighboring cancers, while being non-toxic to other parts of the body. However, traditional cytotoxicity assays are unable to adequately assess the therapeutic effects of bystander cells. Here, we report a method to assess bystander effects of therapeutic stem cells against 3-dimensionally grown glioma cells in real time. U87 glioma cells were stably transduced to express a green fluorescence protein and co-cultivated with mesenchymal stem cells engineered to carry a bacterial cytosine deaminase gene (MSC/CD). Following addition of a 5-fluorocytine (5-FC) prodrug to the co-culture, fluorescence from U87 cells was obtained and analyzed in real time. Notably, the IC50 of 5-FC was higher when U87 cells were grown 3-dimensionally in soft agar medium for 3 weeks, as compared to those grown for one week in two-dimensional monolayer cultures. Additionally, more MSC/CD cells were required to maintain a similar level of efficacy. Since three-dimensional growth of glioma cells under our co-culture condition mimics the long-term expansion of cancer cells in vivo, our method can extend to an in vitro assay system to assess stem cell-mediated anti-cancer effects before advancing into preclinical animal studies.
机译:带有自杀基因的干细胞因其对邻近癌症的细胞毒性旁观者效应而成为治疗候选物,同时对人体其他部位无毒。但是,传统的细胞毒性试验无法充分评估旁观者细胞的治疗效果。在这里,我们报告一种方法来实时评估治疗性干细胞对3维生长的神经胶质瘤细胞的旁观者效应。稳定地转导U87胶质瘤细胞以表达绿色荧光蛋白,并与经过工程改造以携带细菌胞嘧啶脱氨酶基因(MSC / CD)的间充质干细胞共培养。向共培养物中添加5-氟环丁(5-FC)前药后,获得了来自U87细胞的荧光并进行了实时分析。值得注意的是,与在二维单层培养中培养1周的细胞相比,在软琼脂培养基中3维培养U87细胞3周时,5-FC的IC50更高。另外,需要更多的MSC / CD细胞来维持相似的功效水平。由于在我们的共培养条件下神经胶质瘤细胞的三维生长模拟了体内癌细胞的长期扩增,因此我们的方法可以扩展到体外测定系统,以在进入临床前评估干细胞介导的抗癌作用动物研究。

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