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外切核酸酶 III 辅助氧化石墨烯放大荧光各向异性策略用于蓖麻毒素检测。

Exonuclease III-assisted graphene oxide amplified fluorescence anisotropy strategy for ricin detection.

机构信息

Key Laboratory of Luminescent and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, 400715 Chongqing, PR China.

College of Pharmaceutical Sciences, Southwest University, 400715 Chongqing, PR China.

出版信息

Biosens Bioelectron. 2016 Nov 15;85:822-827. doi: 10.1016/j.bios.2016.05.091. Epub 2016 May 31.

Abstract

Graphene oxide (GO) is an excellent fluorescence anisotropy (FA) amplifier. However, in the conventional GO amplified FA strategy, one target can only induce the FA change of one fluorophore on probe, which limits the detection sensitivity. Herein, we developed an exonuclease III (Exo III) aided GO amplified FA strategy by using aptamer as an recognition element and ricin B-chain as a proof-of-concept target. The aptamer was hybridized with a blocker sequence and linked onto the surface of magnetic beads (MBs). Upon the addition of ricin B-chain, blocker was released from the surface of MBs and hybridized with the dye-modified probe DNA on the surface of GO through the toehold-mediated strand exchange reaction. The formed blocker-probe DNA duplex triggered the Exo III-assisted cyclic signal amplification by repeating the hybridization and digestion of probe DNA, liberating the fluorophore with several nucleotides (low FA value). Thus, ricin B-chain could be sensitively detected by the significantly decreased FA. The linear range was from 1.0μg/mL to 13.3μg/mL and the limit of detection (LOD) was 400ng/mL. This method improved the sensitivity of FA assay and it could be generalized to any kind of target detection based on the use of an appropriate aptamer.

摘要

氧化石墨烯(GO)是一种极好的荧光各向异性(FA)放大器。然而,在传统的 GO 放大 FA 策略中,一个靶标只能诱导探针上一个荧光团的 FA 变化,这限制了检测的灵敏度。在此,我们开发了一种外切酶 III(Exo III)辅助的 GO 放大 FA 策略,该策略使用适体作为识别元件,蓖麻毒素 B 链作为概念验证靶标。适体与阻断序列杂交并连接到磁珠(MBs)的表面。当加入蓖麻毒素 B 链时,阻断物从 MBs 的表面释放出来,并通过引发的链交换反应与 GO 表面上的染料修饰的探针 DNA 杂交。形成的阻断物-探针 DNA 双链体通过重复探针 DNA 的杂交和消化触发 Exo III 辅助的循环信号放大,释放出具有几个核苷酸(低 FA 值)的荧光团。因此,可以通过明显降低的 FA 来灵敏地检测到蓖麻毒素 B 链。线性范围为 1.0μg/mL 至 13.3μg/mL,检测限(LOD)为 400ng/mL。该方法提高了 FA 分析的灵敏度,并且可以基于使用适当的适体来推广到任何类型的靶标检测。

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