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Spatio-temporal analysis of tamoxifen-induced bystander effects in breast cancer cells using microfluidics

机译:使用微流控技术分析他莫昔芬诱导的乳腺癌旁观者效应

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摘要

The bystander effect in cancer therapy is the inhibition or killing of tumor cells that are adjacent to those directly affected by the agent used for treatment. In the case of chemotherapy, little is known as to how much and by which mechanisms bystander effects contribute to the elimination of tumor cells. This is mainly due to the difficulty to distinguish between targeted and bystander cells since both are exposed to the pharmaceutical compound. We here studied the interaction of tamoxifen-treated human breast cancer MCF-7 cells with their neighboring counterparts by exploiting laminar flow patterning in a microfluidic chip to ensure selective drug delivery. The spatio-temporal evolution of the bystander response in non-targeted cells was analyzed by measuring the mitochondrial membrane potential under conditions of free diffusion. Our data show that the bystander response is detectable as early as 1 hour after drug treatment and reached effective distances of at least 2.8 mm. Furthermore, the bystander effect was merely dependent on diffusible factors rather than cell contact-dependent signaling. Taken together, our study illustrates that this microfluidic approach is a promising tool for screening and optimization of putative chemotherapeutic drugs to maximize the bystander response in cancer therapy.
机译:癌症治疗中的旁观者效应是抑制或杀死与直接受治疗药物影响的细胞相邻的肿瘤细胞。在化学疗法的情况下,鲜为人知的是旁观者的作用在多大程度上以及通过哪种机制有助于消除肿瘤细胞。这主要是由于难以区分靶向细胞和旁观者细胞,因为两者都暴露于药物化合物。我们在这里研究了他莫昔芬治疗的人乳腺癌MCF-7细胞与其邻近细胞之间的相互作用,方法是利用微流控芯片中的层流模式来确保选择性药物递送。通过在自由扩散条件下测量线粒体膜电位来分析非靶向细胞中旁观者反应的时空演变。我们的数据表明,旁观者反应最早可在药物治疗后1小时检测到,并且有效距离至少为2.8mm。此外,旁观者效应仅取决于扩散因素,而不是细胞接触依赖性信号传导。综上所述,我们的研究表明,这种微流控方法是筛选和优化推定化疗药物以最大程度地提高癌症治疗中旁观者反应的有前途的工具。

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