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基于低温酶辅助信号放大和氧化石墨烯诱导标记核酸探针荧光猝灭的通用适体传感平台:用于茶碱和 ATP 的检测。

A universal aptasensing platform based on cryonase-assisted signal amplification and graphene oxide induced quenching of the fluorescence of labeled nucleic acid probes: application to the detection of theophylline and ATP.

机构信息

Department of Chemistry, Zhejiang Sci-Tech University, Hangzhou, 310008, China.

Guangdong Provincial Key Laboratory of Construction and Detection in Tissue Engineering, School of Biomedical Engineering, Southern Medical University, Guangzhou, 510515, China.

出版信息

Mikrochim Acta. 2019 Jul 2;186(8):494. doi: 10.1007/s00604-019-3596-1.

Abstract

This study describes a universal fluorometric method for sensitive detection of analytes by using aptamers. It is based on the use of graphene oxide (GO) and cryonase-assisted signal amplification. GO is a strong quencher of FAM-labeled nucleic acid probes, while cryonase digests all types of nucleic acid probes. This makes the platform widely applicable to analytes for which the corresponding aptamers are available. Theophylline and ATP were chosen as model analytes. In the absence of targets, dye-labeled aptamers are in a flexible single strand state and adsorb on the GO. As a result, the probes are non-fluorescent due to the efficient quenching of dyes by GO. Upon the addition of a specific target, the aptamer/target complex desorbed from the GO surface and the probe becomes fluorescent. The released complex will immediately become a substrate for cryonase digestion and subsequently releasing the target to bind to another aptamer to initiate the next round of cleavage. This cyclic reaction will repeat again and again until all the related-probes are consumed and all fluorophores light up, resulting in significant fluorescent signal amplification. The detection limits are 47 nM for theophylline and 22.5 nM for ATP. This is much better than that of known methods. The assay requires only mix-and-measure steps that can be accomplished rapidly. In our perception, the detection scheme holds great promise for the design enzyme-aided amplification mechanisms for use in bioanalytical methods. Graphical abstract A cryonase-assisted signal amplification (CASA) method has been developed by using graphene oxide (GO) conjugated with a fluorophore-labeled aptamer for fluorescence signal generation. It has a large scope because it may be applied to numerous analytes.

摘要

本研究描述了一种通过适体灵敏检测分析物的通用荧光方法。它基于使用氧化石墨烯 (GO) 和冷冻酶辅助信号放大。GO 是 FAM 标记核酸探针的强猝灭剂,而冷冻酶消化所有类型的核酸探针。这使得该平台广泛适用于具有相应适体的分析物。茶碱和 ATP 被选为模型分析物。在不存在靶标的情况下,染料标记的适体处于灵活的单链状态并吸附在 GO 上。结果,由于 GO 对染料的有效猝灭,探针是非荧光的。当加入特定的靶标时,适体/靶标复合物从 GO 表面解吸,探针变得荧光。释放的复合物将立即成为冷冻酶消化的底物,并随后释放靶标以与另一个适体结合,从而引发下一轮切割。这种循环反应将反复进行,直到所有相关探针被消耗并且所有荧光团点亮,从而导致显著的荧光信号放大。茶碱的检测限为 47 nM,ATP 的检测限为 22.5 nM。这比已知方法好得多。该测定仅需要混合和测量步骤,可以快速完成。在我们看来,该检测方案为设计酶辅助扩增机制在生物分析方法中的应用提供了很大的前景。

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