State Key Laboratory of Tribology, Tsinghua University, Beijing, 100084, China.
Department of Microsystem Engineering, Rochester Institute of Technology, Rochester, NY, 14623, USA.
Sci Rep. 2017 Nov 10;7(1):15253. doi: 10.1038/s41598-017-15524-0.
Margination of stiffened red blood cells has been implicated in many vascular diseases. Here, we report the margination of stiffened RBCs in vivo, and reveal the crucial role of the vessel geometry in the margination by calculations when the blood is seen as viscoelastic fluid. The vessel-geometry-regulated margination is then confirmed by in vitro experiments in microfluidic devices, and it establishes new insights to cell sorting technology and artificial blood vessel fabrication.
僵硬的红细胞边缘堆积已被牵涉到许多血管疾病中。在这里,我们报告了僵硬的 RBC 在体内的边缘堆积,并通过将血液视为粘弹性流体时的计算揭示了血管几何形状在边缘堆积中的关键作用。然后,通过微流控设备中的体外实验证实了这种由血管几何形状调控的边缘堆积,这为细胞分选技术和人工血管制造提供了新的见解。