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Engineering a 3D microfluidic culture platform for tumor-treating field application

机译:设计3D微流体培养平台以进行肿瘤治疗领域的应用

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摘要

The limitations of current cancer therapies highlight the urgent need for a more effective therapeutic strategy. One promising approach uses an alternating electric field; however, the mechanisms involved in the disruption of the cancer cell cycle as well as the potential adverse effects on non-cancerous cells must be clarified. In this study, we present a novel microfluidic device with embedded electrodes that enables the application of an alternating electric field therapy to cancer cells in a 3D extracellular matrix. To demonstrate the potential of our system to aid in designing and testing new therapeutic approaches, cancer cells and cancer cell aggregates were cultured individually or co-cultured with endothelial cells. The metastatic potential of the cancer cells was reduced after electric field treatment. Moreover, the proliferation rate of the treated cancer cells was lower compared with that of the untreated cells, whereas the morphologies and proliferative capacities of the endothelial cells were not significantly affected. These results demonstrate that our novel system can be used to rapidly screen the effect of an alternating electric field on cancer and normal cells within an in vivo-like microenvironment with the potential to optimize treatment protocols and evaluate synergies between tumor-treating field treatment and chemotherapy.
机译:当前癌症疗法的局限性凸显了迫切需要更有效的治疗策略。一种有前途的方法是使用交变电场。然而,必须弄清楚破坏癌细胞周期的机制以及对非癌细胞的潜在不利影响。在这项研究中,我们提出了一种带有嵌入式电极的新型微流控设备,该设备能够将交替电场疗法应用于3D细胞外基质中的癌细胞。为了证明我们的系统有助于设计和测试新的治疗方法的潜力,将癌细胞和癌细胞聚集体分别培养或与内皮细胞共培养。电场处理后癌细胞的转移潜力降低。此外,与未处理的细胞相比,处理过的癌细胞的增殖速率较低,而内皮细胞的形态和增殖能力没有受到显着影响。这些结果表明,我们的新系统可用于在体内类似的微环境中快速筛选交变电场对癌症和正常细胞的作用,从而有可能优化治疗方案并评估肿瘤治疗和化学疗法之间的协同作用。

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