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A portable visual capillary sensor based on functional DNA crosslinked hydrogel for point-of-care detection of lead ion

机译:基于功能性DNA交联水凝胶的便携式视觉毛细管传感器,用于即时检测铅离子

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摘要

We proposed a facile DNA-based hydrogel capillary sensor (DHCS) for sensitive detection of Pb~(2+). This proposed biosensor took advantage of the capillary action of the capillary tube controlled by the hydrogel film and the mesh size of the hydrogel based on target-responsive DNA. In the presence of Pb~(2+), the crosslinker substrate strand was cleaved leading the hydrogel fractured partly, and the mesh size of the hydrogel film plugging the end of the capillary tube changed. Owing to this, the behavior of the solution flowing through the capillary controlled by the hydrogel film was affected by the concentration of Pb~(2+). Therefore, through reading the distance and duration time by the naked eye, quantitative detection of Pb~(2+) was achieved without any equipment. Additionally, and importantly, the tiny Pb~(2+) responsive DNA hydrogel (0.02 μL) can be directly applied to analysis without encapsulation operations of nanoparticles or enzymes. Benefiting from the DNAzyme merits of high sensitivity and selectivity, in the range of 0.01 -50 uM, the developed method was able to detect as low as 10 nM Pb~(2+) in less 1 h with the distance under 20 mm, meanwhile, the signals of blank and other high concentration metal ions were negligible. This sensor could be utilized to detect Pb~(2+) in tap water with good reliability. Therefore, this proposed strategy provided a miniature, portable, sensitive and highly selective, visual platform for the detection of Pb~(2+) in situ measurement.
机译:我们提出了一种基于DNA的水凝胶毛细管传感器(DHCS),用于灵敏检测Pb〜(2+)。该提出的生物传感器利用了由水凝胶膜控制的毛细管的毛细作用以及基于靶标反应性DNA的水凝胶的网眼大小。在Pb〜(2+)存在下,交联剂底物链断裂,导致水凝胶部分破裂,堵塞毛细管末端的水凝胶膜的筛孔尺寸发生变化。因此,溶液中流经水凝胶膜控制的毛细管的行为受到Pb〜(2+)浓度的影响。因此,通过肉眼读取距离和持续时间,无需任何设备即可定量检测Pb〜(2+)。此外,重要的是,无需对纳米颗粒或酶进行包封操作,即可对Pb〜(2+)响应型小DNA水凝胶(0.02μL)直接进行分析。得益于高灵敏度和高选择性的DNA酶的优点,在0.01 -50 uM的范围内,所开发的方法能够在不到1 h的时间内检测到低至10 nM Pb〜(2+),且距离小于20 mm。 ,空白和其他高浓度金属离子的信号可以忽略不计。该传感器可用于自来水中Pb〜(2+)的可靠检测。因此,该策略为现场检测Pb〜(2+)提供了一个微型,便携式,灵敏,高选择性的可视化平台。

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