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Trends in photonic lab-on-chip interferometric biosensors for point-of-care diagnostics

机译:用于即时诊断的光子芯片实验室干涉生物传感器的趋势

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Portable point-of care (POC) devices for in vitro diagnostics will be a milestone for the achievement of universal healthcare and environmental protection. The main goal is to reach a rapid, user-friendly and highly sensitive portable tool which can provide immediate results in any place at any time while having a competitive cost. Integrated optical (IO) waveguide based-biosensors are the most suitable candidates to achieve this ambitious objective. They are able to operate in real samples (such as blood, urine, wastewater.) affording relevant sensitivities even under a label-free scheme. In addition, arrays of IO sensors for multiplexed analysis can be integrated in lab-on-chip (LOC) platforms, providing a truly cost-effective fabrication and miniaturization. Among the different IO biosensors, interferometric ones have demonstrated the highest sensitivity for label-free detection ever reported. Although the first interferometric biosensors were developed in the early nineties, they focused mainly on preliminary proof-of-concept studies; only recently the resilient potential of interferometric biosensors as highly advanced POC devices has firmly emerged. This review provides an overview of the state-of-the art in photonic interferometric biosensors, their main biofunctionalisation routes and their integration in LOC platforms, while maintaining a special focus on the real analytical applications achieved so far.
机译:用于体外诊断的便携式现场护理(POC)设备将是实现全民医疗保健和环境保护的里程碑。主要目标是要获得一种快速,用户友好和高度敏感的便携式工具,该工具可以在任何时间,任何地点提供即时结果,同时具有竞争力的成本。基于集成光学(IO)波导的生物传感器是实现这一宏伟目标的最合适的候选者。它们能够在真实样品(例如血液,尿液,废水)中操作,即使在无标签方案下也能提供相关的灵敏度。此外,用于多路分析的IO传感器阵列可以集成在片上实验室(LOC)平台中,从而提供了真正具有成本效益的制造和小型化。在不同的IO生物传感器中,干涉仪已证明有史以来最高的无标记检测灵敏度。尽管第一个干涉式生物传感器是在90年代初开发的,但它们主要集中在初步的概念验证研究上。直到最近,作为高度先进的POC设备的干涉式生物传感器才具有了强大的恢复潜力。这篇综述概述了光子干涉式生物传感器的最新技术,它们的主要生物功能化路线以及它们在LOC平台中的集成,同时特别关注了迄今为止已实现的实际分析应用。

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