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A two-compartment microfluidic device for long-term live cell detection based on surface plasmon resonance

机译:基于表面等离子体激元共振的两室微流控装置用于长期活细胞检测

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摘要

A two-compartment microfluidic device integrated with a surface plasmon resonance (SPR) interferometric imaging system has been developed for long-term and real-time cell detection. The device uses a porous membrane sandwiched between two chambers to obtain an exact medium exchange rate and minimal fluid shear stress for cell culture. The two-compartment device was optimized by COMSOL simulations and fabricated using Poly (dimethylsiloxane) elastomer replica molding methods. To confirm the capability of the microfluidic device to maintain the cell physiological environment over long intervals, HeLa cells were cultured in the device for up to 48 h. The cell proliferation process was monitored by both SPR and microscopic time-lapse imaging. The SPR response showed four phases with different growth rates, and agreed well with the time-lapse imaging. Furthermore, real-time detection of cell behaviors under different doses of Paclitaxel and Cisplatin was performed. The SPR responses revealed dose-dependent inhibitions of cell proliferation, with distinct drug action kinetics.
机译:已开发出一种两室微流控设备,该设备与表面等离振子共振(SPR)干涉成像系统集成在一起,可进行长期和实时的细胞检测。该设备使用夹在两个小室之间的多孔膜来获得精确的培养基交换速率和最小的细胞培养液剪切应力。两室设备通过COMSOL仿真进行了优化,并使用聚(二甲基硅氧烷)弹性体复制品成型方法制造。为了确认微流控设备能够长时间维持细胞生理环境的能力,将HeLa细胞在该设备中培养长达48 h。通过SPR和显微延时成像来监测细胞增殖过程。 SPR响应显示四个阶段具有不同的增长率,并且与延时成像非常吻合。此外,实时检测不同剂量紫杉醇和顺铂作用下的细胞行为。 SPR反应显示出剂量依赖性的细胞增殖抑制作用,具有独特的药物作用动力学。

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