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A Novel Microfluidic Point-of-Care Biosensor System on Printed Circuit Board for Cytokine Detection

机译:印刷电路板上用于细胞因子检测的新型微流控即时生物传感器系统

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摘要

Point of Care (PoC) diagnostics have been the subject of considerable research over the last few decades driven by the pressure to detect diseases quickly and effectively and reduce healthcare costs. Herein, we demonstrate a novel, fully integrated, microfluidic amperometric enzyme-linked immunosorbent assay (ELISA) prototype using a commercial interferon gamma release assay (IGRA) as a model antibody binding system. Microfluidic assay chemistry was engineered to take place on Au-plated electrodes within an assay cell on a printed circuit board (PCB)-based biosensor system. The assay cell is linked to an electrochemical reporter cell comprising microfluidic architecture, Au working and counter electrodes and a Ag/AgCl reference electrode, all manufactured exclusively via standard commercial PCB fabrication processes. Assay chemistry has been optimised for microfluidic diffusion kinetics to function under continual flow. We characterised the electrode integrity of the developed platforms with reference to biological sampling and buffer composition and subsequently we demonstrated concentration-dependent measurements of H2O2 depletion as resolved by existing FDA-validated ELISA kits. Finally, we validated the assay technology in both buffer and serum and demonstrate limits of detection comparable to high-end commercial systems with the addition of full microfluidic assay architecture capable of returning diagnostic analyses in approximately eight minutes.
机译:在过去的几十年中,由于快速有效地检测疾病和降低医疗保健成本的压力,护理点(PoC)诊断一直是大量研究的主题。在这里,我们展示了一种新型的,完全集成的,微流安培酶联免疫吸附测定(ELISA)原型,使用商业干扰素γ释放测定(IGRA)作为模型抗体结合系统。微流体化验化学被设计为在基于印刷电路板(PCB)的生物传感器系统上的化验池内的镀金电极上进行。该测定池与包括微流结构,Au工作电极和对电极以及Ag / AgCl参比电极的电化学报告电池相连,所有这些均通过标准的商业PCB制造工艺专门制造。分析化学已针对微流体扩散动力学进行了优化,以在连续流动下发挥作用。我们参考生物采样和缓冲液成分对开发平台的电极完整性进行了表征,随后我们证明了H2O2耗竭的浓度依赖性测量值,已通过现有FDA验证的ELISA试剂盒解决了。最后,我们验证了缓冲液和血清中的检测技术,并证明了与高端商用系统相当的检测限,并添加了完整的微流体检测架构,能够在大约八分钟内返回诊断分析。

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