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Continuous-flow microfluidic blood cell sorting for unprocessed whole blood using surface-micromachined microfiltration membranes

机译:使用表面微机械微滤膜对未处理全血进行连续流微流血细胞分选

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摘要

White blood cells (WBCs) constitute about 0.1% of the blood cells, yet they play a critical role in innate and adaptive immune responses against pathogenic infections, allergic conditions, and malignancies and thus contain rich information about the immune status of the body. Rapid isolation of WBCs directly from whole blood is a prerequisite for any integrated immunoassay platform designed for examining WBC phenotypes and functions; however, such functionality is still challenging for blood-on-a-chip systems, as existing microfluidic cell sorting techniques are inadequate for efficiently processing unprocessed whole blood on chip with concurrent high throughput and cell purity. Herein we report a microfluidic chip for continuous-flow isolation and sorting of WBCs from whole blood with high throughput and separation efficiency. The microfluidic cell sorting chip leveraged the crossflow filtration scheme in conjunction with a surface-micromachined poly(dimethylsiloxane) (PDMS) microfiltration membrane (PMM) with high porosity. With a sample throughput of 1 mL hr−1, the microfluidic cell sorting chip could recover 27.4 ± 4.9% WBCs with a purity of 93.5 ± 0.5%. By virtue of its separation efficiency, ease of sample recovery, and high throughput enabled by its continuous-flow operation, the microfluidic cell sorting chip holds promise as an upstream component for blood sample preparation and analysis in integrated blood-on-a-chip systems.
机译:白细胞(WBC)约占血细胞的0.1%,但它们在针对病原体感染,变态反应性疾病和恶性肿瘤的先天性和适应性免疫反应中起关键作用,因此包含有关人体免疫状态的丰富信息。直接从全血中快速分离WBC是设计用于检查WBC表型和功能的任何集成免疫测定平台的前提。然而,由于现有的微流体细胞分选技术不足以有效地处理未处理的全血芯片同时具有高通量和细胞纯度,因此这种功能对于单芯片血液系统仍然具有挑战性。本文中,我们报告了一种用于从全血中连续分离和分选WBC的微流控芯片,具有高通量和分离效率。微流体细胞分选芯片将错流过滤方案与具有高孔隙率的表面微加工聚二甲基硅氧烷(PDMS)微滤膜(PMM)结合使用。样品通量为1 mL hr -1 ,微流细胞分选芯片可回收27.4±4.9%的WBC,纯度为93.5±0.5%。凭借其分离效率,易于回收的样品以及连续流操作带来的高通量,微流细胞分选芯片有望成为集成式单芯片血液系统中血液样品制备和分析的上游组件。

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