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首页> 外文期刊>Analytical chemistry >Negative Enrichment of Target Cells by Microfluidic Affinity Chromatography
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Negative Enrichment of Target Cells by Microfluidic Affinity Chromatography

机译:微流体亲和色谱法对靶细胞的负富集

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A three-dimensional microfluidic channel was developed for high-purity cell separations. This system featured high capture affinity using multiple vertical inlets to an affinity surface. In cell separations, positive selection (capture of the target cell) is usually employed. Negative enrichment, the capture of nontarget cells and elution of target cells, has distinct advantages over positive selection. In negative enrichment, target cells are not labeled and are not subjected to strenuous elution conditions or dilution. As a result, negative enrichment systems are amenable to multistep processes in microfluidic systems. In previous work (Li, P.; Tian, Y.; Pappas, D. Anal. Chem. 2011, 83, 774-781), we reported cell capture enhancement effects at vertical inlets to the affinity surface. In this study, we designed a chip that has multiple vertical and horizontal channels, forming a three-dimensional separation system. Enrichment of target cells showed separation purities of 92-96percent, compared with straight-channel systems (77percent purity). A parallelized chip was also developed for increased sample throughput. A two-channel system showed similar separation purity with twice the sample flow rate. This microfluidic system, featuring high separation purity and ease of fabrication and use is suitable for cell separations when subsequent analysis of target cells is required.
机译:开发了用于高纯度细胞分离的三维微流体通道。该系统的特点是通过使用多个垂直入口进入亲和力表面来实现高捕获亲和力。在细胞分离中,通常采用阳性选择(捕获靶细胞)。与阳性选择相比,负富集,非靶细胞的捕获和靶细胞的洗脱具有明显的优势。在负富集中,靶细胞未标记且未经历剧烈的洗脱条件或稀释。结果,负富集系统适合微流体系统中的多步过程。在以前的工作中(Li,P.; Tian,Y.; Pappas,D。Anal。Chem。2011,83,774-781),我们报道了亲和表面垂直入口处的细胞捕获增强作用。在这项研究中,我们设计了具有多个垂直和水平通道的芯片,形成了三维分离系统。与直通道系统(纯度为77%)相比,富集靶细胞的分离纯度为92-96%。还开发了并行芯片以提高样品通量。两通道系统显示出相似的分离纯度,样品流速为两倍。这种微流控系统具有高分离纯度,易于制造和使用的特点,适用于需要后续分析靶细胞的细胞分离。

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