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基于3D组装微针离子传感器的可穿戴系统用于经皮监测生理离子波动。

3D-assembled microneedle ion sensor-based wearable system for the transdermal monitoring of physiological ion fluctuations.

作者信息

Huang Xinshuo, Zheng Shantao, Liang Baoming, He Mengyi, Wu Feifei, Yang Jingbo, Chen Hui-Jiuan, Xie Xi

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, School of Electronics and Information Technology; Guangdong Province Key Laboratory of Display Material and Technology, Sun Yat-Sen University, Guangzhou, China.

Pazhou Lab, 510330 Guangzhou, China.

出版信息

Microsyst Nanoeng. 2023 Mar 9;9:25. doi: 10.1038/s41378-023-00497-0. eCollection 2023.

Abstract

Monitoring human health is of considerable significance in biomedicine. In particular, the ion concentrations in blood are important reference indicators related to many diseases. Microneedle array-based sensors have enabled promising breakthroughs in continuous health monitoring due to their minimally invasive nature. In this study, we developed a microneedle sensing-array integrated system to continuously detect subcutaneous ions to monitor human health status in real time based on a fabrication strategy for assembling planar microneedle sheets to form 3D microneedle arrays. The limitations of preparing 3D microneedle structures with multiple electrode channels were addressed by assembling planar microneedle sheets fabricated via laser micromachining; the challenges of modifying closely spaced microneedle tips into different functionalized types of electrodes were avoided. The microneedle sensing system was sufficiently sensitive for detecting real-time changes in Ca, K, and Na concentrations, and it exhibited good detection performance. The in vivo results showed that the ion-sensing microneedle array successfully monitored the fluctuations in Ca, K, and Na in the interstitial fluids of rats in real time. By using an integrated circuit design, we constructed the proposed microneedle sensor into a wearable integrated monitoring system. The integrated system could potentially provide information feedback for diseases related to physiological ion changes.

摘要

在生物医学中,监测人体健康具有相当重要的意义。特别是,血液中的离子浓度是与许多疾病相关的重要参考指标。基于微针阵列的传感器由于其微创性,在连续健康监测方面取得了有前景的突破。在本研究中,我们基于一种将平面微针片组装成三维微针阵列的制造策略,开发了一种微针传感阵列集成系统,用于连续检测皮下离子,以实时监测人体健康状况。通过组装经激光微加工制造的平面微针片,解决了制备具有多个电极通道的三维微针结构的局限性;避免了将紧密间隔的微针尖端修饰成不同功能化类型电极的挑战。该微针传感系统对检测钙、钾和钠浓度的实时变化具有足够的灵敏度,并表现出良好的检测性能。体内结果表明,离子传感微针阵列成功实时监测了大鼠间质液中钙、钾和钠的波动。通过采用集成电路设计,我们将所提出的微针传感器构建成一个可穿戴集成监测系统。该集成系统有可能为与生理离子变化相关的疾病提供信息反馈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/648b/9998623/8f2004d4054d/41378_2023_497_Fig1_HTML.jpg

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