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Multiplexed volumetric bar-chart chip for point-of-care diagnostics

机译:用于即时诊断的多路复用体积条形图芯片

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摘要

Microfluidics have become an enabling technology for point-of-care and personalized diagnostics. Desirable capabilities of microfluidics-based diagnostic devices include simplicity, portability, low cost and the performance of multiplexed and quantitative measurements, ideally in a high-throughput format. Here we present the multiplexed volumetric bar-chart chip (V-Chip), which integrates all these capabilities in one device. A key feature of the V-Chip is that quantitative results are displayed as bar charts directly on the device—without the need for optical instruments or any data processing or plotting steps. This is achieved by directly linking oxygen production by catalase, which is proportional to the concentration of the analyte, with the displacement of ink along channels on the device. We demonstrate the rapid quantification of protein biomarkers in diverse clinical samples with the V-Chip. The development of the V-Chip thus opens up the possibility of greatly simplified point-of-care and personalized diagnostics.
机译:微流体技术已成为用于即时护理和个性化诊断的技术。基于微流体的诊断设备的理想功能包括简单性,便携性,低成本以及多路复用和定量测量的性能,理想情况下采用高通量格式。在这里,我们介绍了多路复用的体积条形图芯片(V-Chip),它将所有这些功能集成在一个设备中。 V-Chip的一个关键功能是定量结果直接以条形图显示在设备上,而无需光学仪器或任何数据处理或绘图步骤。这是通过将过氧化氢酶产生的氧气直接与设备中通道上的墨水位移联系起来的,而氧气的产生与分析物的浓度成正比,而氧气的浓度与分析物的浓度成正比。我们证明了使用V-Chip在各种临床样品中对蛋白质生物标记物的快速定量。因此,V-Chip的发展为大大简化即时医疗服务和个性化诊断提供了可能。

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