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Microfluidic designs and techniques using lab-on-a-chip devices for pathogen detection for point-of-care diagnostics

机译:使用片上实验室设备进行病原体检测以进行即时诊断的微流控设计和技术

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Effective pathogen detection is an essential prerequisite for the prevention and treatment of infectious diseases. Despite recent advances in biosensors, infectious diseases remain a major cause of illnesses and mortality throughout the world. For instance in developing countries, infectious diseases account for over half of the mortality rate. Pathogen detection platforms provide a fundamental tool in different fields including clinical diagnostics, pathology, drug discovery, clinical research, disease outbreaks, and food safety. Microfluidic lab-on-a-chip (LOC) devices offer many advantages for pathogen detection such as miniaturization, small sample volume, portability, rapid detection time and point-of-care diagnosis. This review paper outlines recent microfluidic based devices and LOC design strategies for pathogen detection with the main focus on the integration of different techniques that led to the development of sample-to-result devices. Several examples of recently developed devices are presented along with respective advantages and hmitations of each design. Progresses made in biomarkers, sample preparation, amplification and fluid handling techniques using microfluidic platforms are also covered and strategies for multiplexing and high-throughput analysis, as well as point-of-care diagnosis, are discussed.
机译:有效的病原体检测是预防和治疗传染病的必要先决条件。尽管生物传感器最近取得了进步,但传染病仍然是全世界疾病和死亡的主要原因。例如在发展中国家,传染病占死亡率的一半以上。病原体检测平台在不同领域提供了基本工具,包括临床诊断,病理学,药物发现,临床研究,疾病暴发和食品安全。微流体芯片实验室(LOC)设备为病原体检测提供了许多优势,例如小型化,样品量小,可移植性,快速检测时间和即时诊断。这篇综述文章概述了基于微流控的最新设备和用于病原体检测的LOC设计策略,重点是集成了导致样品到结果设备开发的不同技术。介绍了最近开发的设备的几个示例,以及每种设计的各自优点和缺点。还介绍了使用微流体平台在生物标志物,样品制备,扩增和液体处理技术方面取得的进展,并讨论了多路复用和高通量分析以及即时诊断的策略。

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