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首页> 外文期刊>Analytical Sciences >Single-Step Sandwich Immunoreaction in a Square Glass Capillary Immobilizing Capture and Enzyme-linked Antibodies for Simplified Enzyme-linked Immunosorbent Assay
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Single-Step Sandwich Immunoreaction in a Square Glass Capillary Immobilizing Capture and Enzyme-linked Antibodies for Simplified Enzyme-linked Immunosorbent Assay

机译:方形玻璃毛细管固定捕获和酶联抗体的单步三明治免疫反应,用于简化的酶联免疫吸附测定

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摘要

To simplify the complicated operation steps and to minimize sample and reagent amounts for enzyme-linked immunosorbent assays (ELISA), we developed a square glass capillary immunosensor containing both covalently immobilized capture antibodies and physically adsorbed enzyme-linked antibodies. The immobilization of capture antibodies (anti-human IgG) was carried out by the treatment of 3-aminopropyltriethoxy silane, glutaraldehyde, and protein-A, followed by affinity capture of the antibody. In contrast, the enzyme-linked antibodies (alkaline phosphatase (ALP)-linked anti-human IgG) were physically adsorbed on the four corners of the capillary with the aid of polyethylene glycol (PEG) acting as a scaffold. A nanoliter volume of antigen (human IgG)-containing sample solution was introduced via capillary action. This addition resulted in the release and diffusion of ALP-linked anti-human IgG into the bulk solution. This event led to a 20-min single-step sandwich immunoreaction at the inner wall of capillary; the reaction was detected through the reaction with fluorescein diphosphate (FDP) which generated a fluorescent product, fluorescein. Using this technique, we obtained an intra-capillary precision with a coefficient of variation of 9.7%. In addition, the specificity study showed that the human IgG capillary immunosensor did not respond to rabbit IgG. Quantitative analysis was possible within the response range of 10 – 5000 ng mL~(?1) anti-human IgG. This capillary immunosensor can act as a single analytical unit or can be integrated into a capillary array for multiple bioanalysis.
机译:为了简化复杂的操作步骤并最小化酶联免疫吸附测定(ELISA)的样品和试剂量,我们开发了一种方形玻璃毛细管免疫传感器,既包含共价固定的捕获抗体,又包含物理吸附的酶联抗体。捕获抗体(抗人IgG)的固定化是通过对3-氨丙基三乙氧基硅烷,戊二醛和A蛋白进行处理,然后进行抗体的亲和捕获。相反,借助于聚乙二醇(PEG)作为支架,将酶连接的抗体(碱性磷酸酶(ALP)连接的抗人IgG)物理吸附在毛细管的四个角上。通过毛细管作用引入纳升体积的含抗原(人IgG)的样品溶液。该添加导致ALP连接的抗人IgG的释放和扩散到本体溶液中。此事件导致在毛细管内壁进行20分钟的单步三明治免疫反应。通过与二磷酸荧光素(FDP)的反应检测反应,生成荧光产物荧光素。使用这种技术,我们获得了毛内精度,变异系数为9.7%。此外,特异性研究表明,人IgG毛细管免疫传感器对兔IgG无反应。在10 – 5000 ng mL〜(?1)抗人IgG反应范围内可能进行定量分析。该毛细管免疫传感器可以充当单个分析单元,也可以集成到毛细管阵列中进行多种生物分析。

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