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首页> 外文期刊>Lab on a chip >Blood plasma separation in a long two-phase plug flowing through disposable tubing
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Blood plasma separation in a long two-phase plug flowing through disposable tubing

机译:流经一次性管路的长两相塞中的血浆分离

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摘要

We report a simple technique to separate plasma from blood in a flowing immiscible plug. We investigate the effect of various control parameters such as blood dilution, injection flow rate, observation time and fluid properties on plasma separation. We find that the technique works best for diluted blood samples at low plug velocities and long observation times. We postulate that the main mechanism responsible for efficient separation is the sedimentation of blood cells in the plug and their subsequent collection by the moving plug causing a significant accumulation of cells at the rear of the plug. We discuss the time scales determining the sedimentation, advection and collection of a blood cell in the immiscible plug and propose a phase diagram that is able to predict the operating space for effective plasma separation. We demonstrate that the technique allows for the extraction of more than 60% of the plasma by volume from 1 μL of diluted blood. We show the practical significance of this method by compartmentalizing the separated plasma into discrete microfluidic droplets and detecting cholesterol. This technique features low consumption of blood (nL-scale) and low shear rate (~ 1 s~(-1)). It is inexpensive, easy to use, and has the potential to be developed as an efficient point-of-care device for blood diagnostics in resource-poor environments. More advanced applications could also be envisioned by integrating our plasma separation method into existing microfluidic drop manipulation techniques.
机译:我们报告了一种简单的技术,可以从流动的不混溶塞中分离血浆和血液。我们研究了各种控制参数(例如血液稀释,注射流速,观察时间和流体性质)对血浆分离的影响。我们发现,该技术最适用于低塞速和长观察时间的稀释血样。我们假定负责有效分离的主要机制是血细胞在塞子中的沉降以及随后被移动的塞子收集,从而在塞子的后部造成大量细胞积聚。我们讨论了确定不混溶栓塞中血细胞沉淀,对流和收集的时间尺度,并提出了一个相图,该相图能够预测有效血浆分离的操作空间。我们证明了该技术允许从1μL稀释血液中提取体积超过60%的血浆。通过将分离的血浆分隔成离散的微流体液滴并检测胆固醇,我们展示了该方法的实际意义。该技术的特点是耗血量少(nL级)和低剪切率(〜1 s〜(-1))。它价格便宜,易于使用,并且有潜力开发为资源匮乏环境中血液诊断的高效即时医疗设备。通过将我们的血浆分离方法整合到现有的微流体液滴处理技术中,也可以设想更先进的应用。

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