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Recent advances in thread-based microfluidics for diagnostic applications

机译:基于螺纹微流体的最新进展,用于诊断应用

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摘要

Over the past decades, researchers have been seeking attractive substrate materials to keep microfluidics improving to outbalance the drawbacks and issues. Cellulose substrates, including thread, paper and hydrogels are alternatives due to their distinct structural and mechanical properties for a number of applications. Thread have gained considerable attention and become promising powerful tool due to its advantages over paper-based systems thus finds numerous applications in the development of diagnostic systems, smart bandages and tissue engineering. To the best of our knowledge, no comprehensive review articles on the topic of thread-based microfluidics have been published and it is of significance for many scientific communities working on Microfluidics, Biosensors and Lab-on-Chip. This review gives an overview of the advances of thread-based microfluidic diagnostic devices in a variety of applications. It begins with an overall introduction of the fabrication followed by an in-depth review on the detection techniques in such devices and various applications with respect to effort and performance to date. A few perspective directions of thread-based microfluidics in its development are also discussed. Thread-based microfluidics are still at an early development stage and further improvements in terms of fabrication, analytical strategies, and function to become low-cost, low-volume and easy-to-use point of-care (POC) diagnostic devices that can be adapted or commercialized for real world applications.
机译:在过去的几十年中,研究人员一直在寻求有吸引力的基材材料,以防止微流体改善以缩短缺点和问题。纤维素衬底,包括螺纹,纸和水凝胶是由于它们不同的结构和机械性能的替代方法。由于其优于基于纸张的系统,因此在纸张系统,智能绷带和组织工程的开发中找到了许多应用,螺纹引起了很大的关注,并且由于其优点而成为有希望的强大工具。据我们所知,没有公布关于基于线程的微流体的主题的全面审查文章,许多在微流体,生物传感器和芯片上工作的许多科学社区具有重要意义。本次审查概述了各种应用中基于线程的微流体诊断设备的进步。它始于整体介绍制造,然后对这种装置中的检测技术和迄今为止的努力和性能进行了深入的综述。还讨论了基于螺纹的微流体在其开发中的几个透视方向。基于螺纹的微流体仍处于早期开发阶段,并进一步改进了制造,分析策略和功能,成为可以的低成本,低容量和易于使用的护理设备(POC)诊断设备适应或商业化以实现现实世界应用。

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