首页> 外文会议>Optical Diagnostics and Sensing VII; Progress in Biomedical Optics and Imaging; vol.8 no.22; Proceedings of SPIE-The International Society for Optical Engineering; vol.6445 >PDMS microdevice with built-in optical biosensor array for on-site monitoring of the microenvironment within microchannels
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PDMS microdevice with built-in optical biosensor array for on-site monitoring of the microenvironment within microchannels

机译:具有内置光学生物传感器阵列的PDMS微型设备,用于现场监测微通道内的微环境

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Nowadays as cell culture in microchannels becomes increasingly popular, new and convenient ways to closely monitor the cultured cells in the microchannels are essential. With that objective, we managed to merge different technologies, mainly fluorescence based optical sensing, layer-by-layer encapsulation and Poly Dimethyl Siloxane (PDMS) based microfluidics to build a hybrid system which can provide on-site monitoring of the cellular microenvironment within the microchannels. The system is mainly built from two parts: one is the fluorescence quenching based sensing material which changes its fluorescence intensity proportional to the analyte concentration, for example glucose level in the media; the other part of the system is the microfluidic PDMS chip, featuring some nanoliter wells fabricated beneath the microchannels where the cells could be cultured. These nanowells are intended sites for the immobilization of the sensing material followed by the layer-by-layer encapsulation. Some preliminary results show that the system is sensitive in low analyte concentration, while being highly miniaturized, low cost, easy to be customized and with great potential applications in medical diagnostics and environmental monitoring.
机译:如今,随着微通道中细胞培养的日益普及,密切监视微通道中已培养细胞的新便捷方法至关重要。为了实现这一目标,我们设法合并了不同的技术,主要是基于荧光的光学传感,逐层封装和基于聚二甲基硅氧烷(PDMS)的微流控技术,以构建一个混合系统,该系统可以对细胞内的微环境进行现场监控。微通道。该系统主要由两部分组成:第一部分是基于荧光猝灭的传感材料,其荧光强度与分析物的浓度成正比,例如介质中的葡萄糖水平。系统的另一部分是微流体PDMS芯片,其特征是在可培养细胞的微通道下方制造了几纳升的孔。这些纳米孔是固定传感材料,然后进行逐层封装的预期位置。一些初步结果表明,该系统对低分析物浓度敏感,同时高度小型化,低成本,易于定制并且在医学诊断和环境监测中具有巨大的潜在应用。

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