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Designing a biostable L-DNAzyme for lead(II) ion detection in practical samples

机译:设计用于实际样品中铅(II)离子检测的生物稳定L-DNA酶

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摘要

A promising biosensor for effective lead(II) ion detection in practical applications was developed by constructing a Pb2+-specific L-DNAzyme, the enantiomer of the natural nucleic acid-constructed D-DNAzyme. This fluorescence sensor contains the L-enzyme strand with a quencher at the 3a€2 end, and the L-substrate strand with a fluorophore at the 5a€2 and a quencher at the 3a€2 ends that formed a complex. In the presence of Pb2+, the L-substrate is cut into two fragments, leading to the recovery of fluorescence. The sensor shows high sensitivity and selectivity for Pb2+ detection with a linear response in the range of 5a€“100 nM and a detection limit of 3 nM in aqueous solution. Importantly, based on the fact that L-DNAzyme consists of non-natural nucleic acids, which are insensitive to nuclease digestion, protein adsorption and D-DNA hybridization, our sensor shows a specific response to Pb2+ in practical water and serum samples. Therefore, it is expected that our L-DNAzyme-based strategy may offer a new method for developing simple, rapid and sensitive sensors in complex systems.
机译:通过构建天然核酸构建的D-DNA酶的对映异构体Pb2 +特异的L-DNA酶,开发了一种在实际应用中有效检测铅(II)离子的有前途的生物传感器。该荧光传感器包含在3a€2末端带有猝灭剂的L酶链和在5a€2末端带有荧光团的L-底物链以及在3a€2末端具有猝灭剂的L-底物链,形成复合物。在Pb2 +存在下,L底物被切成两个片段,导致荧光的恢复。该传感器对Pb2 +的检测显示出高灵敏度和选择性,线性响应范围为5a”至100 nM,在水溶液中的检测极限为3 nM。重要的是,基于L-DNAzyme由对核酸酶消化,蛋白质吸附和D-DNA杂交不敏感的非天然核酸组成的事实,我们的传感器在实际的水和血清样品中显示出对Pb2 +的特异性反应。因此,可以预期,我们基于L-DNAzyme的策略可能会为在复杂系统中开发简单,快速和灵敏的传感器提供一种新方法。

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