首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dual-triggered nanoaggregates of cucurbit[7]uril and gold nanoparticles for multi-spectroscopic quantification of creatinine in urinalysis
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Dual-triggered nanoaggregates of cucurbit[7]uril and gold nanoparticles for multi-spectroscopic quantification of creatinine in urinalysis

机译:尿道双触发的南氧纳米菌,尿液分析中肌酐多光谱定量的尿嘧啶纳米粒子

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摘要

Plasmonic nanocomposites of cucurbit[7]uril (CB7) and gold nanoparticles (Au NPs) have been optimised and applied to rapidly detect and quantify creatinine (CRN) of clinically relevant levels in urinalysis. The in situ formation of plasmonic nanocomposites via aqueous self-assembly is mediated by a combination of the portal binding of CB7 and the electrostatic effects of CRN molecules, allowing independent spectral signatures to be extracted from the same sample solution using surface-enhanced Raman spectroscopy (SERS) and UV-Visible spectroscopy. Meanwhile the formation of host-guest complexes between CB7 and CRN allows quantification of CRN in highly diluted synthetic urine by localising CRN at or in close proximity to the plasmonic hotspots within the Au NP:CB7 nanoaggregates, which enables highly reproducible SERS signals (within 5% error) with a sub-mu M detection limit of 12.5 ng mL(-1) (111 nM) and has tolerance against the presence of proteins and other biomolecules in a complex matrix. Our nanobiosensing material platform demonstrates the potential to be extended to other in-field applications.
机译:葫芦(CB7)和金纳米颗粒(Au NPS)的素纳米复合材料已被优化,并应用于在尿液分析中快速检测和量化临床相关水平的肌酐(CRN)。通过含水自组装的等离子体纳米复合材料的原位形成是通过CB7的门网结合的组合和CRN分子的静电效果介导的,允许使用表面增强的拉曼光谱从相同的样品溶液中提取独立的光谱鉴定( SERS)和UV可见光光谱。同时,CB7和CRN之间的宿主访客复合物的形成允许通过在AU NP:CB7纳米聚格中的等离子体热点附近或附近地定位高度稀释的合成尿液中的CRN,这使得能够高度可再现的SERS信号(5 %误差)具有12.5 ng ml(-1)(111nm)的亚mu m检测限,并且在复杂基质中具有耐受蛋白质和其他生物分子的耐受性。我们的纳米极细材料平台展示了延伸到其他现场应用的可能性。

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