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Microfluidics Integrated Biosensors: A Leading Technology towards Lab-on-a-Chip and Sensing Applications

机译:微流控集成生物传感器:芯片实验室和传感应用的领先技术

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摘要

A biosensor can be defined as a compact analytical device or unit incorporating a biological or biologically derived sensitive recognition element immobilized on a physicochemical transducer to measure one or more analytes. Microfluidic systems, on the other hand, provide throughput processing, enhance transport for controlling the flow conditions, increase the mixing rate of different reagents, reduce sample and reagents volume (down to nanoliter), increase sensitivity of detection, and utilize the same platform for both sample preparation and detection. In view of these advantages, the integration of microfluidic and biosensor technologies provides the ability to merge chemical and biological components into a single platform and offers new opportunities for future biosensing applications including portability, disposability, real-time detection, unprecedented accuracies, and simultaneous analysis of different analytes in a single device. This review aims at representing advances and achievements in the field of microfluidic-based biosensing. The review also presents examples extracted from the literature to demonstrate the advantages of merging microfluidic and biosensing technologies and illustrate the versatility that such integration promises in the future biosensing for emerging areas of biological engineering, biomedical studies, point-of-care diagnostics, environmental monitoring, and precision agriculture.
机译:生物传感器可以被定义为紧凑的分析装置或单元,其结合有固定在物理化学换能器上以测量一种或多种分析物的生物或生物衍生的敏感识别元件。另一方面,微流体系统可提供通量处理,增强控制流动条件的运输,增加不同试剂的混合速率,减少样品和试剂的体积(低至纳升),提高检测灵敏度,并利用相同的平台样品制备和检测。鉴于这些优势,微流控和生物传感器技术的集成提供了将化学和生物成分合并到一个平台中的能力,并为未来的生物传感应用提供了新的机会,包括便携性,可处置性,实时检测,空前的准确性和同步分析单个设备中分析不同的分析物。这篇综述旨在代表基于微流体的生物传感领域的进展和成就。这篇综述还提供了一些从文献中摘录的实例,以展示微流体技术与生物传感技术融合的优势,并说明这种整合有望在未来的生物传感领域为生物工程,生物医学研究,即时诊断,环境监测等新兴领域提供多功能性。 ,以及精准农业。

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