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用于生物传感器应用的金纳米粒子修饰石墨烯片上金结合多肽的定点固定。

Site-specific immobilization of gold binding polypeptide on gold nanoparticle-coated graphene sheet for biosensor application.

机构信息

Department of Chemical & Biomolecular Engineering, BK21 program, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.

出版信息

Nanoscale. 2011 Jul;3(7):2950-6. doi: 10.1039/c1nr10197h. Epub 2011 Jun 3.

Abstract

The effective and strong immobilization of enzymes on solid surfaces is required for current biological applications, such as microchips, biofuel cells, and biosensors. Gold-binding polypeptide (GBP), a genetically designed peptide, possesses unique and specific interactions with a gold surface, resulting in improved enzyme stability and activity. Herein we demonstrated an immobilization method for biosensor applications through site-specific interactions between GBP-fused organophosphorus hydrolase (GBP-OPH) and gold nanoparticle-coated chemically modified graphene (Au-CMG), showing enhanced sensing capability. A flow injection biosensor was fabricated by using GBP-OPH/Au-CMG to detect paraoxons, a model pesticide, showing higher sensitivity, lower detection limit and better operating stability compared that of OPH/Au-CMG. This strategy, which integrates biotic and abiotic moieties through site-specific interactions, has a great potential for use in biosensing and bioconversion process.

摘要

对于当前的生物应用,如微芯片、生物燃料电池和生物传感器,需要有效地将酶固定在固体表面上。金结合多肽(GBP)是一种经过基因设计的肽,与金表面具有独特而特定的相互作用,从而提高了酶的稳定性和活性。在此,我们通过 GBP 融合的有机磷水解酶(GBP-OPH)与金纳米颗粒涂覆的化学修饰石墨烯(Au-CMG)之间的特异性相互作用,展示了一种用于生物传感器应用的固定化方法,显示出增强的传感能力。通过使用 GBP-OPH/Au-CMG 来检测模型农药对氧磷,制备了流动注射生物传感器,与 OPH/Au-CMG 相比,其具有更高的灵敏度、更低的检测限和更好的操作稳定性。这种通过特异性相互作用整合生物和非生物部分的策略,在生物传感和生物转化过程中有很大的应用潜力。

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