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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Improving sensitivity of gold nanoparticle based fluorescence quenching and colorimetric aptasensor by using water resuspended gold nanoparticle
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Improving sensitivity of gold nanoparticle based fluorescence quenching and colorimetric aptasensor by using water resuspended gold nanoparticle

机译:使用水悬浮金纳米颗粒提高基于金纳米颗粒的荧光猝灭和比色适体传感器的灵敏度

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摘要

Gold nanoparticles (AuNPs) based fluorescence quenching or colorimetric aptasensor have been developed for many analytes recently largely because of the ease of detection, high sensitivity, and potential for high-throughput analysis. However, the effects of remnant non-AuNPs components in the colloid gold solution on these assays performance remain unclear. For the first time, we demonstrated that the remnant sodium citrate and the reaction products of three acids play counteractive roles in AuNPs based fluorescence quenching and colorimetric aptasensor in three ways in this study. First, the remnant sodium citrate in the colloid gold solution could increase the fluorescence intensity of FAM labeled on the aptamer that reduce the efficiency of AuNPs fluorescent quenching. Second, the reaction products of citric acid, HC1 and ketoglutaric acid reduce the fluorescence recovery by quenching the fluorescence of FAM labeled on the aptamer dissociated from the surface of AuNPs upon addition of target. Lastly, the reaction products of three acids reduce the pH value of the colloid gold solution that reduce the sensitivity of AuNPs based colorimetric aptasensor by increasing the adsorption of aptamer to surface of AuNPs. With sulfadimethoxine and thrombin as model analytes, we found that water resuspended AuNPs can significantly increase the sensitivity by more than 10-fold for AuNPs based fluorescence quenching aptasensor. In the AuNPs based colorimetric aptasensor for sulfadimethoxine using the water resuspended AuNPs, the sensitivity also was increased by 10-fold compared with that of original AuNPs. The findings in this study provide theoretical guidance for further improving AuNPs based fluorescent quenching and colorimetric aptasensor by adjusting the composition of AuNPs solution.
机译:最近,基于金纳米颗粒(AuNPs)的荧光猝灭或比色适体传感器已针对许多分析物进行了开发,这主要是由于其易于检测,高灵敏度和高通量分析的潜力。然而,胶体金溶液中残留的非AuNPs成分对这些检测性能的影响尚不清楚。在本研究中,我们首次以三种方式证明了残留的柠檬酸钠和三种酸的反应产物在基于AuNPs的荧光猝灭和比色适体传感器中起反作用。首先,胶体金溶液中残留的柠檬酸钠可能会增加适体上标记的FAM的荧光强度,从而降低AuNPs荧光猝灭的效率。其次,柠檬酸,HCl和酮戊二酸的反应产物通过猝灭加入靶标后从AuNPs表面解离的适体上标记的FAM的荧光来降低荧光回收率。最后,三种酸的反应产物降低了胶体金溶液的pH值,从而通过增加适体对AuNPs表面的吸附而降低了基于AuNPs的比色适体传感器的灵敏度。使用磺胺二甲氧嘧啶和凝血酶作为模型分析物,我们发现,对于基于AuNPs的荧光猝灭适体传感器,水重悬的AuNPs可以显着提高灵敏度十倍以上。在使用以水重悬的AuNPs为基的磺胺二甲氧嘧啶的基于AuNPs的比色适体传感器中,与原始AuNPs相比,其灵敏度也提高了10倍。本研究的发现为通过调节AuNPs溶液的组成进一步改善基于AuNPs的荧光猝灭和比色适体传感器提供了理论指导。

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