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A microfluidic chip for direct and rapid trapping of white blood cells from whole blood

机译:一种从全血中直接快速捕获白细胞的微流控芯片

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摘要

Blood analysis plays a major role in medical and science applications and white blood cells (WBCs) are an important target of analysis. We proposed an integrated microfluidic chip for direct and rapid trapping WBCs from whole blood. The microfluidic chip consists of two basic functional units: a winding channel to mix and arrays of two-layer trapping structures to trap WBCs. Red blood cells (RBCs) were eliminated through moving the winding channel and then WBCs were trapped by the arrays of trapping structures. We fabricated the PDMS (polydimethylsiloxane) chip using soft lithography and determined the critical flow velocities of tartrazine and brilliant blue water mixing and whole blood and red blood cell lysis buffer mixing in the winding channel. They are 0.25 μl/min and 0.05 μl/min, respectively. The critical flow velocity of the whole blood and red blood cell lysis buffer is lower due to larger volume of the RBCs and higher kinematic viscosity of the whole blood. The time taken for complete lysis of whole blood was about 85 s under the flow velocity 0.05 μl/min. The RBCs were lysed completely by mixing and the WBCs were trapped by the trapping structures. The chip trapped about 2.0 × 103 from 3.3 × 103 WBCs.
机译:血液分析在医学和科学应用中起着重要作用,白细胞(WBC)是分析的重要目标。我们提出了一种集成的微流控芯片,用于直接和快速捕获全血中的WBC。微流体芯片由两个基本功能单元组成:用于混合的缠绕通道和用于捕获白细胞的两层捕获结构阵列。通过移动缠绕通道消除了红细胞(RBC),然后WBC被捕获结构的阵列捕获。我们使用软光刻技术制造了PDMS(聚二甲基硅氧烷)芯片,并确定了曲折津和亮蓝色水混合以及在缠绕通道中混合全血和红细胞裂解缓冲液的临界流速。它们分别是0.25μl/ min和0.05μl/ min。全血和红细胞裂解缓冲液的临界流速较低,这是由于RBC的体积较大和全血的运动粘度较高。在0.05μl/ min的流速下,全血完全裂解所需的时间约为85 s。通过混合将RBC完全溶解,并将WBC用捕获结构捕获。芯片从3.3×10 3 WBC捕获了大约2.0×10 3

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