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A transparent cell-culture microchamber with a variably controlled concentration gradient generator and flow field rectifier

机译:透明的细胞培养微室带有可变控制的浓度梯度发生器和流场整流器

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摘要

Real-time observation of cell growth provides essential information for studies such as cell migration and chemotaxis. A conventional cell incubation device is usually too clumsy for these applications. Here we report a transparent microfluidic device that has an integrated heater and a concentration gradient generator. A piece of indium tin oxide (ITO) coated glass was ablated by our newly developed visible laser-induced backside wet etching (LIBWE) so that transparent heater strips were prepared on the glass substrate. A polymethylmethacrylate (PMMA) microfluidic chamber with flow field rectifiers and a reagent effusion hole was fabricated by a CO2 laser and then assembled with the ITO heater so that the chamber temperature can be controlled for cell culturing. A variable chemical gradient was generated inside the chamber by combining the lateral medium flow and the flow from the effusion hole. Successful culturing was performed inside the device. Continuous long-term (>10 days) observation on cell growth was achieved. In this work the flow field, medium replacement, and chemical gradient in the microchamber are elaborated.
机译:实时观察细胞生长为细胞迁移和趋化性研究提供了重要信息。对于这些应用,常规的细胞培养装置通常太笨拙。在这里,我们报告了一个透明的微流控设备,它具有集成的加热器和浓度梯度发生器。我们新开发的可见激光诱导的背面湿法蚀刻(LIBWE)烧蚀了一块氧化铟锡(ITO)涂层玻璃,从而在玻璃基板上制备了透明的加热条。带有流场整流器和试剂流出孔的聚甲基丙烯酸甲酯(PMMA)微流体腔室是由CO2激光器制造的,然后与ITO加热器组装在一起,从而可以控制腔室温度以进行细胞培养。通过结合侧向介质流和流出孔的流,在腔室内产生了可变的化学梯度。在设备内部成功进行了培养。实现了对细胞生长的连续长期(> 10天)观察。在这项工作中,详细说明了微腔中的流场,介质替换和化学梯度。

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