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Open Gradient Magnetic Red Blood Cell Sorter Evaluation on Model Cell Mixtures

机译:模型细胞混合物的开放梯度磁性红细胞分选仪评估

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摘要

The emerging applications of biological cell separation to rare circulating tumor cell (CTC) detection and separation from blood rely on efficient methods of red blood cell (RBC) debulking. The two most widely used methods of centrifugation and RBC lysis have been associated with the concomitant significant losses of the cells of interest (such as progenitor cells or circulating tumor cells). Moreover, RBC centrifugation and lysis are not well adapted to the emerging diagnostic applications, relying on microfluidics and micro-scale total analytical systems. Therefore, magnetic RBC separation appears a logical alternative considering the high iron content of the RBC (normal mean 105 fg) as compared to the white blood cell iron content (normal mean 1.6 fg). The typical magnetic forces acting on a RBC are small, however, as compared to typical forces associated with centrifugation or the forces acting on synthetic magnetic nanoparticles used in current magnetic cell separations. This requires a significant effort in designing and fabricating a practical magnetic RBC separator. Applying advanced designs to the low cost, high power permanent magnets currently available, and building on the accumulated knowledge of the immunomagnetic cell separation methods and devices, an open gradient magnetic red blood cell (RBC) sorter was designed, fabricated and tested on label-free cell mixtures, with potential applications to RBC debulking from whole blood samples intended for diagnostic tests.
机译:生物细胞分离在稀有循环肿瘤细胞(CTC)检测和从血液分离中的新兴应用依赖于红细胞(RBC)减集的有效方法。离心和RBC裂解这两种最广泛使用的方法与目标细胞(例如祖细胞或循环肿瘤细胞)的伴随重大损失有关。此外,RBC的离心和裂解方法不能很好地适应新兴的诊断应用,这需要依靠微流控技术和微型总分析系统。因此,考虑到RBC的铁含量较高(正常平均值为105 fg),与白细胞铁含量(正常平均值为1.6 fg)相比,RBC磁性分离似乎是合理的选择。但是,与离心作用相关的典型力或作用于当前磁性细胞分离中使用的合成磁性纳米颗粒的力相比,作用在RBC上的典型磁力很小。在设计和制造实用的磁性RBC隔板时,这需要大量的精力。将先进的设计应用于目前可用的低成本,高功率永磁体,并基于对免疫磁性细胞分离方法和设备的积累了解,设计,制造并测试了开放梯度磁性红细胞(RBC)分选机,该分选机具有以下特点:游离细胞混合物,可能从打算用于诊断测试的全血样本中去除红细胞。

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