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用于夹心免疫测定的抗体在环烯烃共聚物上的表面固定化。

Surface immobilisation of antibody on cyclic olefin copolymer for sandwich immunoassay.

作者信息

Raj Jog, Herzog Grégoire, Manning Mary, Volcke Cédric, MacCraith Brian D, Ballantyne Scott, Thompson Michael, Arrigan Damien W M

机构信息

Biomedical Diagnostics Institute Programme, Tyndall National Institute, Lee Maltings, University College, Lee Maltings, Cork, Ireland.

出版信息

Biosens Bioelectron. 2009 Apr 15;24(8):2654-8. doi: 10.1016/j.bios.2009.01.026. Epub 2009 Jan 31.

Abstract

In this work, the surface functionalisation of the commercially available cyclic olefin copolymer (COC) materials, Zeonor and Zeonex, has been studied. The methodology employed involved oxidation in oxygen plasma, functionalisation of the oxidized surface with aminopropyl triethoxy silane and, finally, attachment of antibody using covalent linker molecules. 1,4-Phenylene diisothiocyanate was selected as the most suitable cross-linker for the attachment of protein, as assessed by fluorescent intensity measurements on immobilised FITC-labelled IgG antibody. The modification method was characterised by contact angle measurements, ellipsometry, X-ray photoelectron spectroscopy (XPS) and fluorescence microscopy. The data are consistent with the deposition of a polymeric film of the silane chemisorbed to the oxidised plastic surface. The functionalised surfaces were employed in a sandwich immunoassay format using the reagents goat anti-human IgG (G alphaHIgG) and fluorescently labelled G alphaHIgG (Cy5-G alphaHIgG) as capture and detection antibodies, respectively, and with human IgG (HIgG) as the model analyte. The lowest concentration of HIgG detected was 0.1 ng ml(-1), with a relative standard deviation of 15%. Non-specific binding effects were also assessed. The method and supporting data demonstrate that simple approaches to surface functionalisation can be adapted to plastic-based devices.

摘要

在这项工作中,对市售的环烯烃共聚物(COC)材料Zeonor和Zeonex的表面功能化进行了研究。所采用的方法包括在氧等离子体中氧化,用氨丙基三乙氧基硅烷对氧化后的表面进行功能化,最后使用共价连接分子连接抗体。通过对固定化的异硫氰酸荧光素(FITC)标记的IgG抗体进行荧光强度测量评估,选择1,4 - 亚苯基二异硫氰酸酯作为连接蛋白质最合适的交联剂。通过接触角测量、椭偏仪、X射线光电子能谱(XPS)和荧光显微镜对改性方法进行了表征。数据与硅烷化学吸附到氧化塑料表面形成的聚合物膜的沉积情况一致。使用山羊抗人IgG(GαHIgG)和荧光标记的GαHIgG(Cy5 - GαHIgG)分别作为捕获抗体和检测抗体,并以人IgG(HIgG)作为模型分析物,将功能化表面用于夹心免疫分析形式。检测到的HIgG的最低浓度为0.1 ng ml⁻¹,相对标准偏差为15%。还评估了非特异性结合效应。该方法及相关数据表明,简单的表面功能化方法可适用于基于塑料的器件。

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