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一种由功能性多层涂层组成的用于诊断标志物蛋白的单步酶免疫分析毛细管传感器。

A single-step enzyme immunoassay capillary sensor composed of functional multilayer coatings for the diagnosis of marker proteins.

作者信息

Funano Shun-ichi, Sugahara Masato, Henares Terence G, Sueyoshi Kenji, Endo Tatsuro, Hisamoto Hideaki

机构信息

Graduate School of Engineering, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai City, Osaka 599-8531, Japan.

出版信息

Analyst. 2015 Mar 7;140(5):1459-65. doi: 10.1039/c4an01781a. Epub 2015 Jan 19.

Abstract

A single-step, easy-to-use enzyme immunoassay capillary sensor, composed of functional multilayer coatings, was developed in this study. The coatings were composed of substrate-immobilized hydrophobic coating, hydrogel coating, and soluble coating containing an enzyme-labeled antibody. The response mechanism involved a spontaneous immunoreaction triggered by capillary action-mediated introduction of a sample antigen solution and subsequent separation of unreacted enzyme-labeled antibodies and antigen-enzyme-labeled antibody complexes by the molecular sieving effect of the hydrogel. An enzyme reaction at the substrate-immobilized hydrophobic coating/hydrogel coating interface resulted in a protein-selective fluorescence response. An antigen concentration-dependent response was obtained for diagnostic marker protein samples (hemoglobin A1c (HbA1c), 7.14-16.7 mg mL(-1); alpha-fetoprotein (AFP), 1.4-140 ng mL(-1); C-reactive protein (CRP), 0.5-10 μg mL(-1)) that cover a clinically important concentration range. The successful measurement of CRP in diluted serum samples demonstrated the application of this capillary sensor.

摘要

本研究开发了一种由功能性多层涂层组成的单步、易于使用的酶免疫分析毛细管传感器。这些涂层由固定在底物上的疏水涂层、水凝胶涂层和含有酶标记抗体的可溶性涂层组成。其响应机制涉及由毛细管作用介导引入样品抗原溶液引发的自发免疫反应,随后通过水凝胶的分子筛效应分离未反应的酶标记抗体和抗原 - 酶标记抗体复合物。在固定有底物的疏水涂层/水凝胶涂层界面处的酶反应产生了蛋白质选择性荧光响应。对于覆盖临床重要浓度范围的诊断标志物蛋白质样品(糖化血红蛋白(HbA1c),7.14 - 16.7 mg mL(-1);甲胎蛋白(AFP),1.4 - 140 ng mL(-1);C反应蛋白(CRP),0.5 - 10 μg mL(-1))获得了抗原浓度依赖性响应。在稀释血清样品中成功测量CRP证明了这种毛细管传感器的应用。

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