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Automating micro cellular detection process using all-transparent microfluidic platform and surface plasmon resonance technique

机译:使用全透明的微流体平台和表面等离子体共振技术自动化微蜂窝检测过程

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This paper reports an automated polymer based microfluidic analysis system integrated with the surface plasmon resonance (SPR) biosensor for qualitatively monitoring of cell adhesion on the sensor surface. Micropumps, microchannels, and SPR biosensor were integrated into a single polymer (PMMA) based microfluidic system. The integrated system has been studied in its potential application in drugs discovery. An experiment, which is monitoring the activities of living cells in the presence or absence of trypsin in RPMI-1640 medium, was conducted to show the ability of its biomedical application. Because SPR based bio-detection requires optically transparent substrates, PMMA is a potential replacement for glass and silicon-glass in microfluidic systems, if biocompatibility and low-cost are desired. Hence, our work has shown the feasibility of commercializing SPR based biomedical/chemical analyses system in the near future. Furthermore, an advanced 2-dimensional multi-chamber microfluidic system with the SPR imaging detection system for detecting the specific binding of biomolecules was also conduced. It shows the possibility of the parallel detection process
机译:本文报道了一种与表面等离子体共振(SPR)生物传感器集成的自动聚合物基微流体分析系统,用于定性监测传感器表面上的细胞粘附。微泵,微通道和SPR生物传感器集成到基于单一的基于聚合物(PMMA)的微流体系统中。综合系统已在其药物发现中的潜在应用中进行了研究过。进行实验,该实验正在监测RPMI-1640培养基中存在或不存在胰蛋白酶在胰蛋白酶的情况下,以显示其生物医学应用的能力。由于基于SPR基生物检测需要光学透明的基材,因此PMMA是微流体系统中的玻璃和硅玻璃的潜在替代,如果需要生物相容性和低成本。因此,我们的工作表明,在不久的将来,我们的工作表明了商业化基于SPR基础的生物医学/化学分析系统的可行性。此外,还涉及具有用于检测生物分子的特异性结合的SPR成像检测系统的先进的二维多室微流体系统。它显示了并行检测过程的可能性

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