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Ultrahigh Sensitivity Slot-Waveguide Biosensor on a Highly Integrated Chip for Simultaneous Diagnosis of Multiple

机译:高度集成芯片上的超高灵敏度缝隙波导生物传感器,可同时诊断多种疾病

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摘要

SABIO is a multidisciplinary project involving the emerging fields of micro-nanotechnology, photonics, fluidics and bio-chemistry, targeting a contribution to the development of intelligent diagnostic equipment through the demonstration of a compact polymer based and silicon-based CMOS-compatible micro-nano system. It integrates optical biosensors for label-free biomolecular recognition based on a novel photonic structure named slot-waveguide with immobilized bimolecular receptors on its surface. The slot-waveguides provide high optical intensity in a sub wavelength-size low refractive index region (slot-region) sandwiched between two high refractive index strips (rails) [1] leading to an enhanced interaction between the optical probe and biomolecular complexes (antibody-antigen). As such a biosensor is predicted to exhibit a surface concentration detection-limit lower than 1 pg/mm2, state-of-the-art in label free integrated optical biosensors, as well as the possibility of multiplexed assay, which, together with reduced reaction volumes, leads to the ability to perform rapid multi-analytesensing and comprehensive tests. This offers the further advantageous possibility of assaying several parameters simultaneously and consequently, statistical analysis of these results can potentially increase the reliability and reduce the measurement uncertainty of a diagnostic over single-parameter assays. In addition, the SABIO micro-nano system device applied to its novel protein-based diagnostic technology has the potential to be fast and easy to use, making routine screening or monitoring of diseases more cost-effective.
机译:SABIO是一个涉及微纳米技术,光子学,流体学和生物化学等新兴领域的多学科项目,旨在通过演示基于聚合物和硅的紧凑型CMOS兼容微纳米技术,为智能诊断设备的发展做出贡献系统。它集成了光学生物传感器,用于无标签生物分子识别,该传感器基于一种名为狭缝波导的新型光子结构,其表面上固定有双分子受体。缝隙波导在夹在两个高折射率条带(轨道)之间的亚波长大小的低折射率区域(缝隙区域)中提供高光强度[1],从而增强了光学探针与生物分子复合物(抗体)之间的相互作用-抗原)。预计此类生物传感器将显示出低于1 pg / mm2的表面浓度检测极限,这是无标记集成光学生物传感器的最新技术,以及可以进行多重测定以及减少反应的多重检测方法数量众多,因此可以执行快速的多重分析和综合测试。这提供了同时测定多个参数的进一步有利的可能性,因此,与单参数测定相比,对这些结果进行统计分析可以潜在地提高诊断的可靠性并减少诊断的测量不确定性。此外,应用于其新颖的基于蛋白质的诊断技术的SABIO微纳米系统设备具有快速,易于使用的潜力,从而使常规筛查或疾病监测更具成本效益。

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