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Real Time Flow-Through Biosensor

机译:实时流通式生物传感器

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An all polymeric platform based on planar microring resonator employing a microfluidic flow-through approach is presented and exploited for biosensing applications. A micromilled hole in the center of the microring resonator drives the analyte flow towards the sensing surface, so optimizing the transport kinetic. A simulated and experimental evaluation of the improved performances in terms of kinetic transport and response time is also presented. Biosensing experiments with bovine serum albumin (BSA) based solutions at different concentrations are performed. Optical characterizations by resonance peak shift show a linear behaviour up to 200 nM and a saturation condition at higher concentrations in SU-8 based microring resonators. A reduction of more than 4 times of the response times, as compared with the standard flow-over approach, is obtained with the proposed flow-through approach. The proposed sensing architecture, allowing the single addressing of ring resonator, gives numerous advantages related to time responses and multiplexing of different analytes for a label-free biosensing.
机译:提出了一种基于平面微环谐振器的全聚合物平台,该平台采用了微流体流通方法,并已用于生物传感应用。微环谐振器中心的微孔驱动分析物流向传感表面,从而优化了传输动力学。还提供了关于动力学传输和响应时间方面的改进性能的模拟和实验评估。使用不同浓度的牛血清白蛋白(BSA)溶液进行生物传感实验。在基于SU-8的微环谐振器中,通过共振峰位移进行的光学表征显示出高达200 nM的线性行为和较高浓度下的饱和条件。与标准的流过方法相比,使用建议的流过方法可以将响应时间减少4倍以上。所提出的传感体系结构允许对环形谐振腔进行单个寻址,在无标记生物传感方面具有与时间响应和不同分析物的多路复用相关的众多优势。

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