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Real-time label-free biosensing withintegrated planar waveguide ring-resonators

机译:无标签的无标签生物沉积,具有抗组平面波导环形谐振器

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We review the use of planar integrated optical waveguide ring resonators for label free bio-sensing and present recent results from two European biosensor collaborations: SABIO and InTopSens. Planar waveguide ring resonators are attractive for label-free biosensing due to their small footprint, high Q-factors, and compatibility with on-chip optics and microfluidics. This enables integrated sensor arrays for compact labs-on-chip. One application of label-free sensor arrays is for point-of-care medical diagnostics. Bringing such powerful tools to the single medical practitioner is an important step towards personalized medicine, but requires addressing a number of issues: improving limit of detection, managing the influence of temperature, parallelization of the measurement for higher throughput and on-chip referencing, efficient light-coupling strategies to simplify alignment, and packaging of the optical chip and integration with microfluidics. From the SABIO project we report refractive index measurement and label-free biosensing in an 8-channel slot-waveguide ring resonator sensor array, within a compact cartridge with integrated microfluidics. The sensors show a volume sensing detection limit of 5x10~(-6) RIU and a surface sensing detection limit of 0.9 pg/mm2. From the InTopSens project we report early results on silicon-on-insulator racetrack resonators.
机译:我们审查了平面集成光波导环谐振器,用于标签免费生物传感和目前两种欧洲生物传感器合作的最新结果:Sabio和Intopsens。平面波导环谐振器由于其小足迹,高Q因素和与片上光学和微流体的兼容性而具有无标签生物溶解的吸引力。这使集成的传感器阵列能够进行Compact Lab上的片上。无标签传感器阵列的一个应用是用于护理点医疗诊断。为单个医生带来这种强大的工具是对个性化医学的重要一步,但需要解决一些问题:改善检测限,管理温度的影响,测量的相行化,以获得更高的吞吐量和片上参考,高效光耦合策略,简化对准,以及光学芯片的包装和与微流体的集成。从SABIO项目中,我们在带有集成微流体的紧凑型筒中报告8通道插槽波导环谐振器传感器阵列中的折射率测量和无标签的生物溶解。传感器显示5×10〜(-6)RiU的音量感测检出限,表面感测检出限为0.9pg / mm2。从Intopsens项目来看,我们在绝缘体上的硅射击谐振器上报告早期结果。

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