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A highly efficient bead extraction technique with low bead number for digitalmicrofluidic immunoassay

机译:一种用于数字的低珠数的高效珠提取技术微流体免疫分析

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摘要

Here, we describe a technique to manipulate a low number of beads to achieve high washing efficiency with zero bead loss in the washing process of a digital microfluidic (DMF) immunoassay. Previously, two magnetic bead extraction methods were reported in the DMF platform: (1) single-side electrowetting method and (2) double-side electrowetting method. The first approach could provide high washing efficiency, but it required a large number of beads. The second approach could reduce the required number of beads, but it was inefficient where multiple washes were required. More importantly, bead loss during the washing process was unavoidable in both methods. Here, an improved double-side electrowetting method is proposed for bead extraction by utilizing a series of unequal electrodes. It is shown that, with proper electrode size ratio, only one wash step is required to achieve 98% washing rate without any bead loss at bead number less than 100 in a droplet. It allows using only about 25 magnetic beads in DMF immunoassay to increase the number of captured analytes on each bead effectively. In our human soluble tumor necrosis factor receptor I (sTNF-RI) model immunoassay, the experimental results show that, comparing to our previous results without using the proposed bead extraction technique, the immunoassay with low bead number significantly enhances thefluorescencesignal to provide a better limit of detection (3.14 pg/ml) with smaller reagent volumes(200 nl) and shorter analysis time (<1 h). This improved bead extraction technique notonly can be used in the DMF immunoassay but also has great potential to be used in any otherbead-based DMF systems for different applications.
机译:在这里,我们描述了一种在数字微流控(DMF)免疫测定的洗涤过程中操纵少量珠子以实现高洗涤效率且零珠子损失的技术。以前,在DMF平台上报道了两种磁珠提取方法:(1)单面电润湿法和(2)双面电润湿法。第一种方法可以提供高清洗效率,但是它需要大量的珠子。第二种方法可以减少所需的磁珠数量,但是在需要多次洗涤的情况下效率低下。更重要的是,两种方法都不可避免地在洗涤过程中损失珠子。在此,提出了一种改进的双面电润湿方法,用于通过利用一系列不相等的电极来提取珠子。结果表明,在适当的电极尺寸比的情况下,在液滴中的珠数小于100的情况下,只需一个洗涤步骤即可达到98%的洗涤率,而无任何珠损失。它允许在DMF免疫测定中仅使用约25个磁珠来有效地增加每个磁珠上捕获的分析物的数量。在我们的人类可溶性肿瘤坏死因子受体I(sTNF-RI)模型免疫测定中,实验结果表明,与我们以前的未使用建议的珠提取技术的结果相比,低珠数的免疫测定显着增强了萤光信号以较小的试剂量提供更好的检测限(3.14 pg / ml)(200 nl)和更短的分析时间(<1 h)。这种改进的珠粒提取技术不是仅可用于DMF免疫测定,也具有很大的潜力可用于其他任何方法基于珠的DMF系统,适用于不同的应用。

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