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首页> 外文期刊>Frontiers in Chemistry >Advanced Evanescent-Wave Optical Biosensors for the Detection of Nucleic Acids: An Analytic Perspective
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Advanced Evanescent-Wave Optical Biosensors for the Detection of Nucleic Acids: An Analytic Perspective

机译:用于检测核酸的先进的van逝波光学生物传感器:分析视角

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Evanescent-wave optical biosensors have become an attractive alternative for the screening of nucleic acids in the clinical context. They possess highly sensitive transducers able to perform detection of a wide range of nucleic acid-based biomarkers without the need of any label or marker. These optical biosensor platforms are very versatile, allowing the incorporation of an almost limitless range of biorecognition probes precisely and robustly adhered to the sensor surface by covalent surface chemistry approaches. In addition, their application can be further enhanced by their combination with different processes, thanks to their integration with complex and automated microfluidic systems, facilitating the development of multiplexed and user-friendly platforms. The objective of this work is to provide a comprehensive synopsis of cutting-edge analytical strategies based on these label-free optical biosensors able to deal with the drawbacks related to DNA and RNA detection, from single point mutations assays and epigenetic alterations, to bacterial infections. Several plasmonic and silicon photonic-based biosensors are described together with their most recent applications in this area. We also identify and analyse the main challenges faced when attempting to harness this technology and how several innovative approaches introduced in the last years manage those issues, including the use of new biorecognition probes, surface functionalization approaches, signal amplification and enhancement strategies, as well as, sophisticated microfluidic solutions.
机译:van逝波光学生物传感器已成为在临床背景下筛选核酸的有吸引力的替代方法。它们拥有高度灵敏的传感器,能够检测多种基于核酸的生物标记物,而无需任何标记物或标记物。这些光学生物传感器平台非常通用,可以通过共价表面化学方法将几乎无限范围的生物识别探针准确而牢固地结合到传感器表面。此外,由于它们与复杂且自动化的微流体系统集成在一起,因此可以通过与不同过程结合来进一步增强其应用程序,从而促进了多路复用和用户友好平台的开发。这项工作的目的是基于这些无标记的光学生物传感器提供最先进的分析策略的综合提要,这些传感器能够处理与DNA和RNA检测有关的缺陷,从单点突变测定和表观遗传改变到细菌感染。描述了几种基于等离子体和硅光子的生物传感器及其在该领域的最新应用。我们还确定并分析了尝试利用该技术时面临的主要挑战,以及近年来引入的几种创新方法如何解决这些问题,包括使用新的生物识别探针,表面功能化方法,信号放大和增强策略以及,复杂的微流体解决方案。

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