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Interferometric Reflectance Imaging Sensor (IRIS)—A Platform Technology for Multiplexed Diagnostics and Digital Detection

机译:干涉反射成像传感器(IRIS)-用于多路诊断和数字检测的平台技术

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摘要

Over the last decade, the growing need in disease diagnostics has stimulated rapid development of new technologies with unprecedented capabilities. Recent emerging infectious diseases and epidemics have revealed the shortcomings of existing diagnostics tools, and the necessity for further improvements. Optical biosensors can lay the foundations for future generation diagnostics by providing means to detect biomarkers in a highly sensitive, specific, quantitative and multiplexed fashion. Here, we review an optical sensing technology, Interferometric Reflectance Imaging Sensor (IRIS), and the relevant features of this multifunctional platform for quantitative, label-free and dynamic detection. We discuss two distinct modalities for IRIS: (i) low-magnification (ensemble biomolecular mass measurements) and (ii) high-magnification (digital detection of individual nanoparticles) along with their applications, including label-free detection of multiplexed protein chips, measurement of single nucleotide polymorphism, quantification of transcription factor DNA binding, and high sensitivity digital sensing and characterization of nanoparticles and viruses.
机译:在过去的十年中,对疾病诊断的不断增长的需求刺激了具有空前能力的新技术的快速发展。最近出现的传染病和流行病已经揭示了现有诊断工具的不足,以及进一步改进的必要性。光学生物传感器可通过提供以高度灵敏,特异性,定量和多重方式检测生物标志物的手段,为下一代诊断奠定基础。在这里,我们将对光学传感技术,干涉反射成像传感器(IRIS)以及该多功能平台的相关功能进行定量,无标签和动态检测进行回顾。我们讨论了IRIS的两种不同模式:(i)低倍放大(整体生物分子质量测量)和(ii)高倍放大(单个纳米颗粒的数字检测)及其应用,包括无标记的多重蛋白芯片检测,测量单核苷酸多态性,定量转录因子DNA结合以及对纳米颗粒和病毒的高灵敏度数字感测和表征。

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