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QCM-nanomagnetic beads biosensor for lead ion detection

机译:QCM-纳米磁珠生物传感器用于铅离子检测

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摘要

As lead poses a serious threat to humans even in small amounts, all kinds of lead detection sensors with high sensitivity and selectivity are being constantly improved and put forward. In this report, a novel, simple and label-free quartz crystal microbalance (QCM) biosensor is proposed for detecting lead ions (Pb2+). The biosensor takes full advantage of the high specificity of GR-5 DNAzyme to Pb2+ and the high sensitivity of QCM. In particular, nanomagnetic beads (NMBs) are used as a novel and effective mean of signal amplification in the biosensor because of their mass and their ability to enhance the inductive effect, which are very beneficial for both higher sensitivity and a lower detection limit. In practice, GR-5 DNAzyme, innovatively combined with NMBs, was modified on the gold electrode of the QCM through gold-sulfur self-assembly. When the electrode was exposed to Pb2+ solution, DNAzyme was severed into two parts at the RNA site (rA), along with the release of NMBs, which caused a great increase in frequency shift of the QCM electrode. Finally, a perfect linear correlation between the logarithm of Pb2+ concentration and the change in frequency was obtained from 1 pM to 50 nM, with a detection limit as low as 0.3 pM. Moreover, the biosensor shows both an average recovery of 97 +/- 6% in a drinking water sample and an excellent specificity for Pb2+ compared with other metal ions.
机译:随着铅对人类的严重威胁,即使少量少量,具有高灵敏度和选择性的各种铅检测传感器也在不断提高并提出。在本报告中,提出了一种用于检测铅离子(PB2 +)的新型,简单和无标记的石英晶体微稳定(QCM)生物传感器。生物传感器充分利用GR-5 DNAzyme的高特异性至PB2 +和QCM的高灵敏度。特别地,由于其质量和增强感应效果的能力,纳米磁珠(NMBS)用作生物传感器中的信号放大的新颖且有效的平均值,这对于较高的灵敏度和较低的检测极限非常有益。实际上,通过金硫自组装在QCM的金电极上改变Gr-5 DNazyme。当电极暴露于Pb2 +溶液时,将DNazyme切断到RNA位点(RA)的两部分中,随着氮气的释放,这导致QCM电极的频移大大增加。最后,从1pp至50nm获得Pb2 +浓度的对数和频率变化之间的完美线性相关性,检测限为低至0.3μm。此外,与其他金属离子相比,生物传感器显示在饮用水样品中97 +/- 6%的平均回收率和Pb2 +的优异特异性。

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