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Biosensors and Microfluidic Biosensors: From Fabrication to Application

机译:生物传感器和微流控生物传感器:从制造到应用

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摘要

Biosensors are ubiquitous in a variety of disciplines, such as biochemical, electrochemical, agricultural, and biomedical areas. They can integrate various point-of-care applications, such as in the food, healthcare, environmental monitoring, water quality, forensics, drug development, and biological domains. Multiple strategies have been employed to develop and fabricate miniaturized biosensors, including design, optimization, characterization, and testing. In view of their interactions with high-affinity biomolecules, they find application in the sensitive detection of analytes, even in small sample volumes. Among the many developed techniques, microfluidics have been widely explored; these use fluid mechanics to operate miniaturized biosensors. The currently used commercial devices are bulky, slow in operation, expensive, and require human intervention; thus, it is difficult to automate, integrate, and miniaturize the existing conventional devices for multi-faceted applications. Microfluidic biosensors have the advantages of mobility, operational transparency, controllability, and stability with a small reaction volume for sensing. This review addresses biosensor technologies, including the design, classification, advances, and challenges in microfluidic-based biosensors. The value chain for developing miniaturized microfluidic-based biosensor devices is critically discussed, including fabrication and other associated protocols for application in various point-of-care testing applications.
机译:生物传感器在生物化学、电化学、农业和生物医学领域等各个学科中无处不在。它们可以集成各种护理点应用,例如食品、医疗保健、环境监测、水质、法医学、药物开发和生物领域。开发和制造小型化生物传感器采用了多种策略,包括设计、优化、表征和测试。鉴于它们与高亲和力生物分子的相互作用,它们可用于分析物的灵敏检测,即使在小样品体积中也是如此。在众多发达的技术中,微流体已被广泛探索;它们使用流体力学来操作小型化生物传感器。目前使用的商用设备体积庞大,运行缓慢,价格昂贵,并且需要人工干预;因此,对于多方面的应用,很难将现有的传统设备自动化、集成和小型化。微流控生物传感器具有移动性、操作透明性、可控性和稳定性等优点,传感反应体积小。本文综述了生物传感器技术,包括基于微流控的生物传感器的设计、分类、进展和挑战。批判性地讨论了开发基于微流体的小型化生物传感器设备的价值链,包括用于各种即时检测应用的制造和其他相关协议。

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