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基于DNA模板银纳米簇的铜介导开启型荧光生物传感器用于无标记且灵敏地检测三磷酸腺苷。

Cu-mediated turn-on fluorescence biosensor based on DNA-templated silver nanoclusters for label-free and sensitive detection of adenosine triphosphate.

作者信息

Li Jingze, Peng Guibin, Yu Ying, Lin Bixia, Zhang Li, Guo Manli, Cao Yujuan, Wang Yumin

机构信息

Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine, School of Chemistry, South China Normal University, Guangzhou, Guangdong, 510006, People's Republic of China.

School of Materials Engineering, Jiangxi College of Applied Technology, Ganzhou, Jiangxi, 341000, People's Republic of China.

出版信息

Mikrochim Acta. 2022 Dec 31;190(1):41. doi: 10.1007/s00604-022-05617-7.

Abstract

A Cu-mediated turn-on fluorescence biosensor based on the DNA-templated green-emitting silver nanoclusters (DNA@g-AgNCs) was developed for label-free and sensitive detection of adenosine 5'-triphosphate (ATP). Cu was able to quench the bright green fluorescence of DNA@g-AgNCs because of the coordination and photoinduced electron transfer between DNA@g-AgNCs and Cu. Therefore, a unique and effective fluorescence biosensor can be constructed with the formation of DNA@g-AgNCs/Cu/ATP ternary-competition system. With the introduction of ATP, the DNA@g-AgNCs/Cu fluorescence sensing system will be disrupted and the fluorescence of DNA@g-AgNCs was recovered due to higher affinity of ATP towards Cu. On the basis of this feature, the DNA@g-AgNCs/Cu fluorescence sensing system demonstrated quantitative determination of ATP in the range 0.05 - 3 μM and a detection limit of 16 nM. Moreover, the fluorescence sensing system was successfully applied to the quantitative determination of ATP in human urine and serum samples with recoveries ranging from 98.6 to 106.5%, showing great promise to provide  a label-free, cost-efficient, and rapid platform for ATP-related clinical disease diagnosis.

摘要

基于DNA模板化绿色发射银纳米簇(DNA@g-AgNCs)构建了一种铜介导的开启型荧光生物传感器,用于无标记且灵敏地检测5'-三磷酸腺苷(ATP)。由于DNA@g-AgNCs与铜之间的配位作用和光致电子转移,铜能够淬灭DNA@g-AgNCs的亮绿色荧光。因此,通过形成DNA@g-AgNCs/Cu/ATP三元竞争体系,可以构建一种独特且有效的荧光生物传感器。随着ATP的引入,DNA@g-AgNCs/Cu荧光传感体系将被破坏,由于ATP对铜具有更高的亲和力,DNA@g-AgNCs的荧光得以恢复。基于这一特性,DNA@g-AgNCs/Cu荧光传感体系能够对0.05 - 3 μM范围内的ATP进行定量测定,检测限为16 nM。此外,该荧光传感体系已成功应用于人体尿液和血清样本中ATP的定量测定,回收率在98.6%至106.5%之间,为与ATP相关的临床疾病诊断提供了一个无标记、成本效益高且快速的平台,展现出巨大的应用前景。

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