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Developing a fluorometric aptasensor based on carbon quantum dots and silver nanoparticles for the detection of adenosine

机译:基于碳量子点和银纳米颗粒开发荧光型Aptasensor以检测腺苷的检测

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摘要

A new simple fluorometric aptasensor was developed for the determination of adenosine (AD) in human urine samples. A mixture of new and green nitrogen and sulfur co-doped carbon quantum dots (N,S-CQDs) as fluorescents and silver nanoparticles (AgNPs) as quenchers were utilized for aptasensing. The binding of AD to anti AD aptamer (AP) provided greater protection for unmodified AgNPs against salt-induced aggregation than AP alone. In this case, the fluorescence signal of N,S-CQDs was quenched by the dispersed AgNPs based on the inner filter effect. In the absence of AD, AgNPs tended to aggregate in a high salt solution. Hence, the fluorescence spectrum of N,S-CQDs no longer overlapped with the absorption spectrum of the aggregated AgNPs, and consequently N,S-CQDs did not quench. The linear range of the method was in the range of 50-200 nM, and the limit of detection was 13 nM. The relative standard deviations ranged from 5.2 to 7.3% (n = 6). In addition, the method had high selectivity toward AD in the presence of other interferences. The applicability of the method was examined by the quantitation of AD in urine samples of two patients through the standard addition method with recoveries in the range of 89-93%.
机译:开发了一种新的简单荧光Aptasensor,用于测定人尿液样品中的腺苷(Ad)。用于猝灭剂的荧光剂和银纳米颗粒(AgNP)作为荧光剂和银纳米颗粒(AgNP)的新和绿色氮和硫和硫和硫的混合物。 AD对抗Ad Aptamer(AP)的结合为单独的AP提供了对盐诱导的聚集的未改进的agnps的更大保护。在这种情况下,基于内部滤波器效果,通过分散的AgNP淬灭N,S-CQDS的荧光信号。在没有AD的情况下,AgNP倾向于在高盐溶液中聚集。因此,N,S-CQDS的荧光谱不再与聚集AgNP的吸收光谱重叠,因此N,S-CQD没有淬火。该方法的线性范围在50-200nm的范围内,检测限为13nm。相对标准偏差范围为5.2至7.3%(n = 6)。此外,该方法在其他干扰的存在下对AD具有很高的选择性。通过将两名患者的尿液样本通过标准添加方法进行预测,通过标准添加方法进行预测,通过89-93%的标准添加方法来检查该方法的适用性。

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