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微针上的现代微电子学和微流控技术。

Modern microelectronics and microfluidics on microneedles.

机构信息

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 211816, China.

Sir Run Run Hospital, Nanjing Medical University, Nanjing, China.

出版信息

Analyst. 2023 Sep 25;148(19):4591-4615. doi: 10.1039/d3an01045g.

Abstract

Possessing the attractive advantages of moderate invasiveness and high compliance, there is no doubt that microneedles (MNs) have been a gradually rising star in the field of medicine. Recent evidence implies that microelectronics technology based on microcircuits, microelectrodes and other microelectronic elements combined with MNs can realize mild electrical stimulation, drug release and various types of electrical sensing detection. In addition, the combination of microfluidics technology and MNs makes it possible to transport fluid drugs and access a small quantity of body fluids which have shown significant untapped potential for a wide range of diagnostics. Of particular note is that combining both technologies and MNs is more difficult, but is promising to build a modern healthcare platform with more comprehensive functions. This review introduces the properties of MNs that can form integrated systems with microelectronics and microfluidics, and summarizes these systems and their applications. Furthermore, the future challenges and perspectives of the integrated systems are conclusively proposed.

摘要

微针(MNs)具有中度侵入性和高顺应性的优势,无疑是医学领域的一颗冉冉升起的新星。最近的证据表明,基于微电路、微电极和其他微电子元件的微电子技术与 MNs 相结合,可以实现温和的电刺激、药物释放和各种类型的电传感检测。此外,微流控技术与 MNs 的结合使得输送流体药物和获取少量体液成为可能,这在广泛的诊断领域显示出了巨大的潜力。值得注意的是,将这两种技术与 MNs 结合起来更加困难,但有望构建一个具有更全面功能的现代医疗保健平台。本文介绍了 MNs 的特性,这些特性可以与微电子和微流控技术形成集成系统,并总结了这些系统及其应用。此外,还提出了集成系统未来的挑战和展望。

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