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一种基于电化学肽的Ara h 2抗体传感器,该传感器利用带有His标签的肽在镍(II)-次氮基三乙酸自组装单分子层上制备而成。

An electrochemical peptide-based Ara h 2 antibody sensor fabricated on a nickel(II)-nitriloacetic acid self-assembled monolayer using a His-tagged peptide.

作者信息

Zaitouna Anita J, Lai Rebecca Y

机构信息

Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588-0304, USA.

Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE 68588-0304, USA.

出版信息

Anal Chim Acta. 2014 May 30;828:85-91. doi: 10.1016/j.aca.2014.04.033. Epub 2014 Apr 21.

Abstract

We report, for the first time, the use of a Ni(II)-nitriloacetic acid (NTA) self-assembled monolayer (SAM) in the fabrication of an electrochemical peptide-based (E-PB) sensor for detection of anti-Ara h 2 antibodies. We compared the performance of the sensor fabricated on a Ni(II)-NTA SAM using a His-tagged peptide with the sensor fabricated using the conventional approach via direct immobilization of a thiolated peptide. While both sensors responded only to the correct antibody in the presence of random antibodies, we observed differences between the sensors. Specifically, the detection limit of the His-tagged sensor was 1pM, significantly lower than the 200pM detection limit of the conventional thiolated sensor. More importantly, unlike our previously developed E-PB sensors, both sensors are regenerable and reusable. The thiolated sensor can be readily regenerated using guanidine hydrochloride; whereas the His-tagged sensor can be regenerated by direct displacement of the His-tagged probes using Ni(II) ions. Overall, our results show that both approaches are well-suited for E-PB sensor fabrication; more importantly, specific sensor properties such as detection limit and dynamic range can be tuned by simply using a different probe immobilization method.

摘要

我们首次报道了使用镍(II)-次氮基三乙酸(NTA)自组装单分子层(SAM)制备用于检测抗Ara h 2抗体的基于电化学肽(E-PB)的传感器。我们比较了使用带有His标签的肽在镍(II)-NTA SAM上制备的传感器与通过直接固定硫醇化肽使用传统方法制备的传感器的性能。虽然在存在随机抗体的情况下两种传感器都仅对正确的抗体有反应,但我们观察到了传感器之间的差异。具体而言,带有His标签的传感器的检测限为1pM,显著低于传统硫醇化传感器的200pM检测限。更重要的是,与我们之前开发的E-PB传感器不同,这两种传感器都是可再生和可重复使用的。硫醇化传感器可以使用盐酸胍轻松再生;而带有His标签的传感器可以通过使用镍(II)离子直接置换带有His标签的探针来再生。总体而言,我们的结果表明这两种方法都非常适合E-PB传感器的制备;更重要的是,通过简单地使用不同的探针固定方法可以调整诸如检测限和动态范围等特定的传感器特性。

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