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3D Printed Microfluidic Device with Integrated Biosensors for Online Analysisof Subcutaneous Human Microdialysate

机译:带有集成生物传感器的3D打印微流控设备可进行在线分析皮下微透析液的制备

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摘要

This work presents the design, fabrication, and characterization of a robust 3D printed microfluidic analysis system that integrates with FDA-approved clinical microdialysis probes for continuous monitoring of human tissue metabolite levels. The microfluidic device incorporates removable needle type integrated biosensors for glucose and lactate, which are optimized for high tissue concentrations, housed in novel 3D printed electrode holders. A soft compressible 3D printed elastomer at the base of the holder ensures a good seal with the microfluidic chip. Optimization of the channel size significantly improves the response time of the sensor. As a proof-of-concept study, our microfluidic device was coupled to lab-built wireless potentiostats and used to monitor real-time subcutaneous glucose and lactate levels in cyclists undergoing a training regime.
机译:这项工作介绍了坚固的3D打印微流体分析系统的设计,制造和表征,该系统与FDA批准的临床微透析探针相集成,可连续监测人体组织代谢物水平。该微流控设备集成了可移动的针型集成式生物传感器,用于葡萄糖和乳酸,它们针对高组织浓度进行了优化,并安装在新型3D打印电极支架中。支架底部的可软压缩3D打印弹性体可确保与微流体芯片的良好密封。通道尺寸的优化可显着改善传感器的响应时间。作为概念验证研究,我们的微流控设备与实验室制造的无线恒电位仪耦合,用于监控正在接受训练方案的骑自行车者的实时皮下葡萄糖和乳酸水平。

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