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Immunonanogold Catalytic Resonance Scattering Spectral Assay of Trace Immunoglobulin M

机译:微量免疫球蛋白M的免疫金催化共振散射光谱测定

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摘要

Gold nanoparticles of 10 nm were prepared by the improved method of trisodium citrate, and used to label goat anti-human immunoglobulin M (anti-IgM) to obtain a resonance scattering spectral probe for IgM. In pH 4.5 KH2PO4-Na2HPO4 buffer solution and in the presence of polyethylene glycol, the nanogold-labeled anti-IgM was combined with IgM specifically to form immunogold complex particles. After centrifugation, the immunonanogold in the supernatant catalyzed the reduction of AuCl4- ions by NH2OH·HCl to form larger size gold particles in pH 1.9 citrate buffer solution, making the resonance scattering intensity at 580 nm enhanced. The amount of the nanogold-labeled anti-IgM in the supernatant decreased with the addition of IgM. The decreased intensity I580 nm was proportional to the concentration of IgM in the range of 0.06-4.80 ng·mL-1. The regression equation was I580 nm=14.5c(IgM)+1.8, with a detection limit of 0.03 ng·mL-1 IgM. The method was applied to the determination of IgM in sera of healthy humans, with satisfactory results.
机译:采用改进的柠檬酸三钠法制备了10nm的金纳米颗粒,用于标记山羊抗人免疫球蛋白M(抗IgM),获得了IgM的共振散射光谱探针。在pH 4.5 KH2PO4-Na2HPO4缓冲溶液中,在聚乙二醇存在下,将纳米金标记的抗IgM与IgM专门结合形成免疫金复合物颗粒。离心后,上清液中的免疫纳米金催化NH2OH·HCl还原AuCl4-离子,在pH 1.9柠檬酸盐缓冲溶液中形成较大尺寸的金颗粒,从而增强了580 nm的共振散射强度。随着IgM的添加,上清液中纳米金标记的抗IgM的量减少。降低的强度I580nm与0.06-4.80ng·mL-1范围内的IgM浓度成比例。回归方程为I580 nm = 14.5c(IgM)+1.8,检出限为0.03 ng·mL-1 IgM。该方法用于健康人血清中IgM的测定,结果令人满意。

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  • 来源
    《Chinese Journal of Chemistry 》 |2008年第8期| 1417-1423| 共7页
  • 作者单位

    Key Laboratory of New Processing Technology for Nonferrous Metals and Materials of Education Ministry, Department of Material and Chemical Engineering, Guilin University of Technology, Guilin, Guangxi 541004, China;

    Key Laboratory of New Processing Technology for Nonferrous Metals and Materials of Education Ministry, Department of Material and Chemical Engineering, Guilin University of Technology, Guilin, Guangxi 541004, China;

    Key Laboratory of New Processing Technology for Nonferrous Metals and Materials of Education Ministry, Department of Material and Chemical Engineering, Guilin University of Technology, Guilin, Guangxi 541004, China;

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