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一种新型吡咯-二苯甲酮共聚二氧化硅纳米复合材料的制备及其作为可视化免疫凝集试验试剂的表征

Preparation and characterization of a novel pyrrole-benzophenone copolymerized silica nanocomposite as a reagent in a visual immunologic-agglutination test.

作者信息

Goldberg-Oppenheimer Pola, Cosnier Serge, Marks Robert S, Regev Oren

机构信息

Department of Chemical Engineering, Ben-Gurion University of the Negev, 84105 Beer-Sheva, Israel.

出版信息

Talanta. 2008 Jun 15;75(5):1324-31. doi: 10.1016/j.talanta.2008.01.060. Epub 2008 Feb 8.

Abstract

Biological sensing is explored through novel stable colloidal dispersions of pyrrole-benzophenone and pyrrole copolymerized silica (PPy-SiO(2)-PPyBPh) nanocomposites, which allow covalent linking of biological molecules through light mediation. The mechanism of nanocomposite attachment to a model protein is studied by gold labeled cholera toxin B (CTB) to enhance the contrast in electron microscopy imaging. The biological test itself is carried out without gold labeling, i.e., using CTB only. The protein is shown to be covalently bound through the benzophenone groups. When the reactive PPy-SiO(2)-PPyBPh-CTB nanocomposite is exposed to specific recognition anti-CTB immunoglobulins, a qualitative visual agglutination assay occurs spontaneously, producing as a positive test, PPy-SiO(2)-PPyBPh-CTB-anti-CTB, in less than 1 h, while the control solution of the PPy-SiO(2)-PPyBPh-CTB alone remained well-dispersed during the same period. These dispersions were characterized by cryogenic transmission microscopy (cryo-TEM), scanning electron microscopy (SEM), FTIR and X-ray photoelectron spectroscopy (XPS).

摘要

通过吡咯 - 二苯甲酮和吡咯共聚二氧化硅(PPy - SiO₂ - PPyBPh)纳米复合材料的新型稳定胶体分散体来探索生物传感,该分散体允许通过光介导实现生物分子的共价连接。通过金标记的霍乱毒素B(CTB)研究纳米复合材料与模型蛋白的附着机制,以增强电子显微镜成像的对比度。生物测试本身在不进行金标记的情况下进行,即仅使用CTB。结果表明蛋白质通过二苯甲酮基团共价结合。当反应性PPy - SiO₂ - PPyBPh - CTB纳米复合材料暴露于特异性识别抗CTB免疫球蛋白时,会自发发生定性视觉凝集试验,在不到1小时内产生阳性测试结果PPy - SiO₂ - PPyBPh - CTB - 抗CTB,而单独的PPy - SiO₂ - PPyBPh - CTB对照溶液在同一时期保持良好分散。这些分散体通过低温透射显微镜(cryo - TEM)、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)进行表征。

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