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自供电微流控技术在即时检测中的应用:从样品采集到蛋白质和核酸的检测。

Self-Powered Microfluidics for Point-of-Care Solutions: From Sampling to Detection of Proteins and Nucleic Acids.

机构信息

Department of Biosystems - Biosensors Group, KU Leuven, Leuven, Belgium.

出版信息

Methods Mol Biol. 2024;2804:3-50. doi: 10.1007/978-1-0716-3850-7_1.

Abstract

Self-powered microfluidics presents a revolutionary approach to address the challenges of healthcare in decentralized and point-of-care settings where limited access to resources and infrastructure prevails or rapid clinical decision-making is critical. These microfluidic systems exploit physical and chemical phenomena, such as capillary forces and surface tension, to manipulate tiny volumes of fluids without the need for external power sources, making them cost-effective and highly portable. Recent technological advancements have demonstrated the ability to preprogram complex multistep liquid operations within the microfluidic circuit of these standalone systems, which enabled the integration of sensitive detection and readout principles. This chapter first addresses how the accessibility to in vitro diagnostics can be improved by shifting toward decentralized approaches like remote microsampling and point-of-care testing. Next, the crucial role of self-powered microfluidic technologies to enable this patient-centric healthcare transition is emphasized using various state-of-the-art examples, with a primary focus on applications related to biofluid collection and the detection of either proteins or nucleic acids. This chapter concludes with a summary of the main findings and our vision of the future perspectives in the field of self-powered microfluidic technologies and their use for in vitro diagnostics applications.

摘要

自供能微流控技术为解决分散式和即时护理环境中的医疗保健挑战提供了一种革命性的方法,在这些环境中,资源和基础设施的有限获取或快速临床决策至关重要。这些微流控系统利用物理和化学现象,如毛细作用力和表面张力,来操纵微小体积的流体,而无需外部电源,从而使它们具有成本效益和高度便携性。最近的技术进步已经证明了在这些独立系统的微流控电路内预先编程复杂的多步液体操作的能力,这使得敏感检测和读出原理的集成成为可能。本章首先讨论了如何通过转向远程微采样和即时护理测试等分散式方法来改善体外诊断的可及性。接下来,强调了自供能微流控技术在实现以患者为中心的医疗保健转变方面的关键作用,使用了各种最先进的示例,主要关注与生物流体采集以及蛋白质或核酸检测相关的应用。本章最后总结了主要发现,并展望了自供能微流控技术及其在体外诊断应用中的未来前景。

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