首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Aptasensor for visual and fluorometric determination of lysozyme based on the inner filter effect of gold nanoparticles on CdTe quantum dots
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Aptasensor for visual and fluorometric determination of lysozyme based on the inner filter effect of gold nanoparticles on CdTe quantum dots

机译:基于金纳米粒子对CdTe量子点的内部过滤作用的可见和荧光测定溶菌酶的Aptasensor

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摘要

The authors describe an aptasensor for visual and fluorescent detection of lysozyme via an inner filter effect (IFE). The assay is based on the fact that red gold nanoparticles (AuNPs) act as powerful absorbers of the green fluorescence of CdTe because of spectral overlap. If the lysozyme-binding aptamer is adsorbed onto the surface of the AuNPs, the salt-induced aggregation of AuNPs (that leads to a color change from red to blue) does not occur and the IFE remains efficient. If lysozyme is present, it will bind the aptamer and thereby prevent its adsorption on the AuNPs. As a result, the salt-triggered aggregation of the AuNPs will occur. Consequently, color will change from red to blue, and green fluorescence will pop up because the IFE is suppressed. Under optimum conditions, fluorescence is linearly related to lysozyme concentration in the 1.0 nM to 20 nM concentration range, with a 0.55 nM limit of detection. The method is perceived to be of wider applicability in that it may be used to design other visual and fluorescent assays if appropriate aptamers are available.
机译:作者介绍了一种通过内部过滤效应(IFE)目测和荧光检测溶菌酶的适体传感器。该测定基于以下事实:由于光谱重叠,红金纳米颗粒(AuNPs)充当了CdTe绿色荧光的强大吸收剂。如果溶菌酶结合的适体被吸附到AuNPs的表面上,则不会发生盐诱导的AuNPs聚集(导致颜色从红色变为蓝色),并且IFE仍然有效。如果存在溶菌酶,它将结合适体,从而阻止其吸附在AuNPs上。结果,将发生AuNPs的盐触发聚集。因此,由于IFE被抑制,因此颜色将从红色变为蓝色,并且会弹出绿色荧光。在最佳条件下,荧光与溶菌酶浓度在1.0 nM至20 nM浓度范围内线性相关,检测极限为0.55 nM。该方法被认为具有更广泛的适用性,因为如果合适的适体可用,它可以用于设计其他视觉和荧光分析。

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