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Integrated separation of blood plasma from whole blood for microfluidic paper-based analytical devices

机译:用于基于微流纸的分析设​​备的血浆与全血的集成分离

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Many diagnostic tests in a conventional clinical laboratory are performed on blood plasma because changes in its composition often reflect the current status of pathological processes throughout the body Recently a significant research effort has been invested into the development of microfluidic paper-based analytical devices (μPADs) implementing these conventional laboratory tests for point-of-care diagnostics in resource-limited settings. This paper describes the use of red blood cell (RBC) agglutination for separating plasma from finger-prick volumes of whole blood directly in paper, and demonstrates the utility of this approach by integrating plasma separation and a colorimetric assay in a single μPAD. The μPAD was fabricated by printing its pattern onto chromatography paper with a solid ink (wax) printer and melting the ink to create hydrophobic barriers spanning through the entire thickness of the paper substrate. The μPAD was functionalized by spotting agglutinating antibodies onto the plasma separation zone in the center and the reagents of the colorimetric assay onto the test readout zones on the periphery of the device. To operate the μPAD, a drop of whole blood was placed directly onto the plasma separation zone of the device. RBCs in the whole blood sample agglutinated and remained in the central zone, while separated plasma wicked through the paper substrate into the test readout zones where analyte in plasma reacted with the reagents of the colorimetric assay to produce a visible color change. The color change was digitized with a portable scanner and converted to concentration values using a calibration curve. The purity and yield of separated plasma was sufficient for successful operation of the μPAD. This approach to plasma separation based on RBC agglutination will be particularly useful for designing fully integrated μPADs operating directly on small samples of whole blood.
机译:在常规临床实验室中,许多诊断测试都是在血浆上进行的,因为其组成的变化通常反映出人体整个病理过程的当前状态。最近,人们投入了巨大的研究力量来开发基于微流体纸质分析仪(μPAD)在资源有限的环境中实施这些常规实验室测试以进行即时诊断。本文描述了使用红细胞(RBC)凝集法直接在纸上从手指刺入的全血中分离血浆,并通过在单个μPAD中整合血浆分离和比色测定法来证明该方法的实用性。通过使用固态墨水(蜡)打印机将其图案打印到色谱纸上并融化墨水以形成跨越纸张基材整个厚度的疏水性屏障,从而制造出μPAD。通过将凝集的抗体点到中心的血浆分离区上,将比色测定的试剂点到设备外围的测试读数区上,来对μPAD进行功能化。为了操作μPAD,将一滴全血直接置于设备的血浆分离区上。全血样品中的RBC凝集并保留在中心区域,而分离的血浆通过纸基芯吸进入测试读数区域,在血浆中分析物与比色测定试剂反应产生可见的颜色变化。用便携式扫描仪将颜色变化数字化,并使用校准曲线将其转换为浓度值。分离血浆的纯度和收率足以确保μPAD的成功运行。这种基于RBC凝集的血浆分离方法对于设计直接在小样本全血中直接运行的完全整合的μPAD尤其有用。

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