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金纳米颗粒-适配体缀合物作为一种强大的竞争试剂,用于通过表面等离子体共振光谱超灵敏检测小分子。

Au NPs-aptamer conjugates as a powerful competitive reagent for ultrasensitive detection of small molecules by surface plasmon resonance spectroscopy.

作者信息

Wang Jianlong, Munir Ahsan, Zhou H Susan

机构信息

Department of Chemical Engineering, Worcester Polytechnic Institute, 100 Institute Road, Worcester, MA 01609, USA.

出版信息

Talanta. 2009 Jun 30;79(1):72-6. doi: 10.1016/j.talanta.2009.03.003. Epub 2009 Mar 14.

Abstract

Features of Au NPs-aptamer conjugates as a powerful competitive reagent to substitute antibody in enhancing surface plasmon resonance spectroscopy (SPR) signal for the detection of small molecule are explored for the first time. In order to evaluate the sensing ability of Au NPs-aptamer conjugates as a competitive reagent, a novel SPR sensor based on indirect competitive inhibition assay (ICIA) for the detection of adenosine is constructed by employing the competitive reaction between antiadenosine aptamer with adenosine and antiadenosine aptamer with its partial complementary ss-DNA. The partial complementary ss-DNA of antiadenosine aptamer is firstly immobilized on SPR gold film as sensing surface. When the Au NPs-antiadenosine aptamer conjugates solution is added to SPR cell in the absence of adenosine, Au NPs-antiadenosine aptamer conjugates is adsorbed to SPR sensor by the DNA hybridization reaction, and results in a large change of SPR signal. However, the change of SPR signal is decreased when the mixing solution of adenosine with Au NPs-antiadenosine aptamer conjugates is added. This is because adenosine reacts with antiadenosine aptamer in Au NPs-antiadenosine aptamer conjugates and changes its structure from ss-DNA to tertiary structure, which cannot hybridize with its partial complementary ss-DNA immobilized on SPR gold surface. Based on this principle, a SPR sensor for indirect detection of adenosine can be developed. The experimental results confirm that the SPR sensor possesses a good sensitivity and a high selectivity for adenosine, which indirectly confirms that Au NPs-aptamer conjugates is a powerful competitive reagent. More significantly, it can be used to develop other SPR sensors based on ICIA to detect different targets by changing the corresponding type of aptamer in Au NPs-aptamer conjugates.

摘要

首次探索了金纳米颗粒-适配体缀合物作为一种强大的竞争试剂替代抗体以增强表面等离子体共振光谱(SPR)信号用于小分子检测的特性。为了评估金纳米颗粒-适配体缀合物作为竞争试剂的传感能力,通过利用抗腺苷适配体与腺苷以及抗腺苷适配体与其部分互补单链DNA之间的竞争反应,构建了一种基于间接竞争抑制分析(ICIA)用于检测腺苷的新型SPR传感器。抗腺苷适配体的部分互补单链DNA首先固定在SPR金膜上作为传感表面。当在不存在腺苷的情况下将金纳米颗粒-抗腺苷适配体缀合物溶液加入到SPR池中时,金纳米颗粒-抗腺苷适配体缀合物通过DNA杂交反应吸附到SPR传感器上,导致SPR信号发生大的变化。然而,当加入腺苷与金纳米颗粒-抗腺苷适配体缀合物的混合溶液时,SPR信号的变化减小。这是因为腺苷与金纳米颗粒-抗腺苷适配体缀合物中的抗腺苷适配体反应,使其结构从单链DNA变为三级结构,从而不能与其固定在SPR金表面的部分互补单链DNA杂交。基于此原理,可以开发一种用于间接检测腺苷的SPR传感器。实验结果证实该SPR传感器对腺苷具有良好的灵敏度和高选择性,这间接证实了金纳米颗粒-适配体缀合物是一种强大的竞争试剂。更重要的是,通过改变金纳米颗粒-适配体缀合物中相应类型的适配体,它可用于开发基于ICIA的其他SPR传感器以检测不同的目标。

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