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Reagentless Optical Biosensor

机译:无试剂光学生物传感器

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摘要

Critical to our ability to respond effectively to a biothreat attack is the development of sensitive and specific sensor systems that can easily be used for rapid screening of potential victims for infection due to biothreat agents and detection of pathogens in the environment. To help address these needs, we have developed a Reagentless Optical Biosensor (ROB) based on protein specific assays and waveguide-based evanescent fluorescence excitation. Modeled on host pathogen interactions, the sensor's membrane based assay provides rapid, sensitive detection without the addition of reagents. We report here the development of two waveguide based detection systems: a laboratory sensor test-bed system and a handheld, battery operated, prototype. Evanescent fluorescence excitation using planar optical waveguides provides spatial filtering of background auto-fluorescence found in many natural samples, thereby permitting direct analysis of complex environmental and medical samples. The waveguide based assay is fully self-contained in a small, exchangeable cartridge that is optically coupled to the sensor detection system making ROB simple to use and offering the possibility of inexpensive, disposable sensor elements. Using assays for cholera toxin we compare results using flourimetry of vesicle solutions against results for our waveguide based test-bed and prototype sensor systems.
机译:对我们有效应对生物威胁攻击的能力的关键是开发灵敏而特异的传感器系统,该系统可轻松用于快速筛查潜在威胁的生物威胁剂和环境中病原体的感染。为了满足这些需求,我们基于蛋白质特异性检测和基于波导的渐逝荧光激发,开发了无试剂光学生物传感器(ROB)。基于宿主病原体相互作用的模型,基于传感器膜的测定无需添加试剂即可进行快速,灵敏的检测。我们在此报告两个基于波导的检测系统的开发情况:一个实验室传感器测试台系统和一个手持式,电池供电的原型。使用平面光波导的瞬逝荧光激发提供了对许多天然样品中发现的背景自发荧光的空间过滤,从而可以直接分析复杂的环境和医学样品。基于波导的测定完全独立于一个小的可更换盒中,该盒可光耦合到传感器检测系统,从而使ROB易于使用,并提供廉价的一次性传感器元件。使用霍乱毒素的测定方法,我们比较了使用囊泡溶液的荧光分析结果与基于波导的测试台和原型传感器系统的结果。

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