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Highly Sensitive and Selective Colorimetric Detection of Creatinine Based on Synergistic Effect of PEG/Hg2+–AuNPs

机译:基于PEG / HG2 + -AUNP的协同作用的肌酸酐高度敏感和选择性色度检测

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摘要

A colorimetric sensor, based on the synergistic coordination effect on a gold nanoparticle (AuNP) platform has been developed for the determination of creatinine. The sensor selects citrate stabilized AuNPs as a platform, polyethylene glycol (PEG) as a decorator, and Hg2+ as a linkage to form a colorimetric probe system (PEG/Hg2−–AuNPs). By forming hydrogen bond between the oxygen-containing functional groups of PEG and citrate ions on the surface of AuNPs, this probe shows good stability. PEG coordinated with Hg2+ synergistically and specifically on the surface of dispersed AuNPs, and the existence of creatinine could induce the aggregation of AuNPs with a corresponding color change and an obvious absorption peak shift within 5 min. This PEG/Hg2+–AuNPs probe towards creatinine shows high sensitivity, and a good linear relationship (R2 = 0.9948) was obtained between A620–522 nm and creatinine concentration, which can achieve the quantitative calculations of creatinine. The limit of detection (LOD) of this PEG/Hg2+–AuNPs probe was estimated to be 9.68 nM, lower than that of many other reported methods. Importantly, the sensitive probe can be successfully applied in a urine simulating fluid sample and a bovine serum sample. The unique synergistic coordination sensing mechanism applied in the designation of this probe further improves its high selectivity and specificity for the detection of creatinine. Thus, the proposed probe may give new inspirations for colorimetric detection of creatinine and other biomolecules.
机译:基于对金纳米粒子(AUNP)平台的协同配位效果的比色传感器用于测定肌酐。传感器选择柠檬酸盐稳定的AUNP作为平台,聚乙二醇(PEG)作为装饰物,HG2 +作为形成比色探针系统(PEG / HG2 - AUNP)。通过在AUNPS表面上的含氧的含氧官能团之间形成氢键,该探针显示出良好的稳定性。 PEG与HG2 +协同效应,特别是在分散的AUNP的表面上,并且肌酐的存在可以诱导肛周的聚集在相应的颜色变化和5分钟内的明显吸收峰值偏移。该PEG / HG2 + -AUNPS探针对肌酐显示出高灵敏度,并且在A620-522nm和肌酐浓度之间获得了良好的线性关系(R2 = 0.9948),可以达到肌酸酐的定量计算。该PEG / HG2 + -AUNPS探针的检测极限估计为9.68nm,低于许多其他报告方法的9.68nm。重要的是,敏感探针可以成功地应用于尿液模拟流体样品和牛血清样品中。应用于该探针的指定中的独特协同协调感测机制进一步提高了其对肌酐检测的高选择性和特异性。因此,所提出的探针可以给出肌酐和其他生物分子的比色检测的新启示。

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