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Development of a multi-well-chip for studying 2D and 3D tumor cell migration and spheroid growth in electrical fields

机译:用于研究2D和3D肿瘤细胞迁移和电场的球状生长的多芯片

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Endogenous electrical fields play an important role in various physiological and pathological events.Yet the effects of electrical cues on processes such as wound healing, tumor development or metastasis are still rarely investigated, though it is known that direct current electrical fields can alter cell migration or proliferation in vitro.Several 2D experimental models for studying cell responses to direct current electrical fields have been presented and characterized but suitable experimental models for electrotaxis studies in 3D are rare.Here we present a novel, easy-to-produce, multi-well-based galvanotactic-chamber for the use in 2D and 3D cell experiments for investigations on the influence of electrical fields on tumor cell migration and tumor spheroid growth.Our presented system allows the simultaneous application of electrical field to cells in four chambers, either cultured on the bottom of the culture-plate (2D) or embedded in hydrogel filled channels (3D).The set-up is also suitable for, live-cell-imaging.Validation tests show stable electrical fields and high cell viabilities inside the channel.Tumor spheroids of various diameters can be exposed to direct current electrical fields up to one week.
机译:内源性电场在各种生理和病理事件中起重要作用。仍然很少研究了电气线索对伤口愈合,肿瘤发育或转移等过程的影响,尽管众所周知,直接电流电场可以改变细胞迁移或体外增殖。已经介绍了用于研究直流电场的电池响应的2D实验模型,但是为3D电池研究的适当实验模型是罕见的。我们呈现了一种新颖,易于生产,多井 - 基于基于电气判断的腔室用于2D和3D细胞实验,用于研究电场对肿瘤细胞迁移和肿瘤球状生长的影响。所呈现的系统允许在四个腔室中同时向细胞中施加电气场。培养板(2D)的底部或嵌入水凝胶填充通道(3D)中。设置是al所以适用于活细胞成像。过验证测试显示稳定的电场和通道内的高电平电池活力。可以暴露各种直径的灯泡球体,直到一周的电流。

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