Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, National-Regional Key Technology Engineering Laboratory for Medical Ultrasound, School of Biomedical Engineering, Shenzhen University Medical School, Shenzhen, 518060, China.
Shenzhen Key Laboratory of Nano-Biosensing Technology, Marshall Laboratory of Biomedical Engineering, International Health Science Innovation Center, Shenzhen University Medical School, Shenzhen University, Shenzhen, 518060, China.
Adv Sci (Weinh). 2024 Jun;11(21):e2308716. doi: 10.1002/advs.202308716. Epub 2024 Mar 19.
Advancing the development of point-of-care testing (POCT) sensors that utilize interstitial fluid (ISF) presents considerable obstacles in terms of rapid sampling and analysis. Herein, an innovative strategy is introduced that involves the use of a 3D-printed, hollow microneedle array patch (MAP), in tandem with a vacuum tube (VT) connected through a hose, to improve ISF extraction efficiency and facilitate expedited analysis. The employment of negative pressure by the VT allows the MAP device to effectively gather ≈18 µL of ISF from the dermis of a live rabbit ear within a concise period of 5 min. This methodology enables the immediate and minimally invasive measurement of glucose levels within the body, employing personal healthcare meters for quantification. The fusion of the VT and MAP technologies provides for their effortless integration into a comprehensive and mobile system for ISF analysis, accomplished by preloading the hose with custom sensing papers designed to detect specific analytes. Moreover, the design and functionality of this integrated VT-MAP system are intuitively user-friendly, eliminating the requirement for specialized medical expertise. This feature enhances its potential to make a significant impact on the field of decentralized personal healthcare.
在利用间质液 (ISF) 开发即时检测 (POCT) 传感器方面,快速采样和分析存在相当大的障碍。在此,引入了一种创新策略,即使用 3D 打印的中空微针阵列贴片 (MAP) 与通过软管连接的真空管 (VT) 配合使用,以提高 ISF 提取效率并促进快速分析。VT 产生的负压使得 MAP 设备能够在 5 分钟内从活兔耳的真皮中有效收集 ≈18µL 的 ISF。该方法能够立即进行微创测量体内的葡萄糖水平,使用个人医疗保健计进行定量分析。VT 和 MAP 技术的融合使得它们能够轻松集成到一个用于 ISF 分析的综合移动系统中,通过在软管上预先加载设计用于检测特定分析物的定制感应纸来实现。此外,这种集成的 VT-MAP 系统的设计和功能直观易用,无需专门的医疗专业知识。这一特性增强了其在分散式个人医疗保健领域产生重大影响的潜力。