粘弹性
化学
微通道
离心
红细胞压积
溶解
色谱法
微流控
粒子(生态学)
红细胞
全血
生物物理学
纳米技术
免疫学
材料科学
复合材料
生物化学
地质学
内分泌学
海洋学
生物
医学
作者
Jeonghun Nam,Jung Hee Yoon,Jeeyong Kim,Woong Sik Jang,Chae Seung Lim
标识
DOI:10.1016/j.chroma.2019.02.019
摘要
The removal of erythrocytes from whole blood is an essential step during sample preparations intended for biomedical analyses and clinical diagnoses. To address the limitations of present methods, such as centrifugation and chemical lysis, we propose a novel microfluidic device for erythrocyte removal with high-efficiency and leukocyte separation from bulk flows of highly concentrated erythrocytes using a viscoelastic non-Newtonian fluid. The proposed device is designed based on the principle of viscoelasticity-induced particle migration toward the center of the microchannel. In addition, we based the functionality of our device on a bio-inspired phenomenon known as margination according to which erythrocytes migrate to the axial center of blood vessels. Fluorescent particles (10 μm) were added to blood suspensions of various concentrations (hematocrit) of erythrocytes in viscoelastic polymer solutions. Optimal hematocrit and flow rate conditions were determined for erythrocyte removal and for the separation of 10 μm particles. We also demonstrated the capability of our device to separate leukocytes with high efficiency (˜94%) and with a high-enrichment factor (10-fold).
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