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Multiscale Experimental Study of Selective Blood-Cell Filtration in Fibrous Porous Media

机译:纤维多孔介质中选择性血细胞过滤的多尺度实验研究

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摘要

Fibrous filters are used widely in transfusion medicine to remove leukocytes (white cells) from platelet-rich plasma (PRP), which is a suspension of leukocytes and platelets in plasma (water and proteins). The interaction of injected leukocytes and platelets with fibers in a filter controls the effectiveness of the filter to selectively retain leukocytes and to allow platelets to pass through. We present comprehensive experimental results at three different spatial scales-cellular, pore, and macroscale-to study PRP filtration in fibrous filters. We used atomic force microscopy (AFM) to measure and compare adhesive forces of the cells brought in contact with clean and protein-coated materials. We then extended cellular-scale experiments to pore-scale flow systems using transparent microfluidic platforms (filter chip) to visualize cell movement in interstitial space and cell capture to microposts under precisely controlled laminar and low-Stokes' -number conditions. We tested filter chips with different surface wettabilities; at the macroscale, we used commercial PRP filters. AFM and filter-chip experiments revealed that plasma proteins play important roles in modifying surface properties to adhere incoming cells. Filter-chip and commercial-filter experimental results showed that adhesion of both leukocytes and platelets decreases at higher shear rates. This reduction was more pronounced for platelets than for leukocytes, which means that results can be used to optimize the selective filtration process.
机译:纤维过滤器广泛用于输血医学中,以从富含血小板的血浆(PRP)中去除白细胞(白细胞),该血浆是白细胞和血小板在血浆(水和蛋白质)中的悬浮液。注射的白细胞和血小板与过滤器中纤维的相互作用控制了过滤器选择性保留白细胞并使血小板通过的有效性。我们在三种不同的空间尺度(细胞,孔隙和宏观尺度)上提供综合的实验结果,以研究纤维过滤器中的PRP过滤。我们使用原子力显微镜(AFM)来测量和比较与清洁的蛋白涂层材料接触的细胞的粘附力。然后,我们将细胞规模的实验扩展到使用透明微流体平台(过滤器芯片)的孔尺度流动系统,以可视化地观察间隙空间中的细胞运动以及在精确控制的层流和低斯托克斯数条件下将细胞捕获至微柱。我们测试了具有不同表面润湿性的滤芯;在宏观上,我们使用了商用PRP过滤器。 AFM和过滤器芯片实验表明,血浆蛋白在修饰表面特性以粘附进入的细胞中起着重要作用。过滤器芯片和商用过滤器的实验结果表明,在较高的剪切速率下,白细胞和血小板的粘附力均降低。血小板的减少比白细胞的减少更为明显,这意味着可以将结果用于优化选择性过滤过程。

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