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首页> 外文期刊>Lab on a chip >Cell culture monitoring for drug screening and cancer research: a transparent, microfluidic, multi-sensor microsystem
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Cell culture monitoring for drug screening and cancer research: a transparent, microfluidic, multi-sensor microsystem

机译:用于药物筛选和癌症研究的细胞培养监测:透明,微流体,多传感器微系统

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摘要

We present a novel, multiparametric microphysiometry system for the dynamic online monitoring of human cancer cell metabolism. The optically transparent, modular, hybrid microsystem is based on a glass chip and combines a cell cultivation chamber, microfluidics and metabolic monitoring with fully integrated chemo-and biosensors. pH and oxygen are measured in the cell culture area, and biosensors for lactate and glucose are connected downstream by microfluidics. The wafer-level fabrication features thin-film platinum and iridium oxide microelectrodes on a glass chip, microfluidics in an epoxy resist, a hybrid assembly and an on-chip reference electrode. The reliable analytical performance of the sensors in cell culture medium was demonstrated. The pH sensors exhibit a long-term stable, linear response. The oxygen sensors show a linear behaviour, which is also observed for low oxygen concentrations. Glucose and lactate measurements show a linear, long-term stable, selective and reversible behaviour in the desired range. T98G human brain cancer cells were cultivated and cell culture metabolism was measured on-chip. Stop/flow cycles were applied and extracellular acidification, respiration, glucose consumption and lactate production were quantified. Long-term metabolic rates were determined and all parameters could be measured in the outlet channel. A placement downstream of the cell cultivation area for biosensors was realised. A highly effective medium exchange and undiluted sampling from the cell culture chamber with low flow rates (2 μl min~(-1)) and low volumes (15 ul per cycle) were achieved. The drug screening application was demonstrated by detecting alteration and recovery effects of cellular metabolism induced by the addition of substances to the medium.
机译:我们提出了一种新颖的,多参数的微生理系统,用于动态在线监测人类癌细胞的代谢。光学透明的模块化混合微系统基于玻璃芯片,并将细胞培养室,微流控和代谢监测与完全集成的化学和生物传感器结合在一起。在细胞培养区域中测量pH和氧气,并通过微流控技术在下游连接乳酸和葡萄糖的生物传感器。晶圆级制造的特点是:玻璃芯片上的薄膜铂和氧化铱微电极,环氧抗蚀剂中的微流体,混合组件和芯片上参比电极。证明了传感器在细胞培养基中的可靠分析性能。 pH传感器具有长期稳定的线性响应。氧气传感器显示出线性行为,对于低氧气浓度也可以观察到。葡萄糖和乳酸的测量显示在所需范围内线性,长期稳定,选择性和可逆的行为。培养T98G人脑癌细胞,并在芯片上测量细胞培养代谢。应用停止/流动循环并定量胞外酸化,呼吸,葡萄糖消耗和乳酸产生。确定了长期代谢率,并且可以在出口通道中测量所有参数。实现了用于生物传感器的细胞培养区域下游的布置。从细胞培养室以低流速(2μlmin〜(-1))和小体积(15 ul /循环)实现了高效的培养基交换和未稀释的采样。通过检测向介质中添加物质诱导的细胞代谢的改变和恢复作用,证明了药物筛选的应用。

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