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首页> 外文期刊>Analytical chemistry >Electrochemical and Surface-Plasmon Correlation of a Serum-Autoantibody Immunoassay with Binding Insights: Graphenyl Surface versus Mercapto-Monolayer Surface
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Electrochemical and Surface-Plasmon Correlation of a Serum-Autoantibody Immunoassay with Binding Insights: Graphenyl Surface versus Mercapto-Monolayer Surface

机译:血清 - 自身抗体免疫测定与结合见解的电化学和表面 - 载离子相关性:甲基苯基表面与巯基单层表面

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摘要

We present here the correlation of picomolar affinities between surface-plasmon and electrochemical immunoassays for the binding of serum glutamic acid decarboxylase 65 autoantibody (GADA), a biomarker of type 1 diabetes (T1D), to its antigen GAD-65. Carboxylated (similar to 5.0%)-graphene-modified immunoassembly on a gold surface-plasmon chip or on an electrochemical array provided significantly larger binding affinity, higher sensitivity, and lower detection limits than a self-assembled monolayer surface of mercaptopropionic acid (MPA). Estimation of the relative surface -COOH groups by covalent tagging of an electroactive aminoferrocene showed that the graphenyl surface displayed a greater number of -COOH groups (9-fold) than the MPA surface. X-ray-photoelectron-spectroscopy analysis showed more C-O and C=O functionalities on the graphene-COOH surface than on the MPA surface. The graphene-COOH coating on gold exhibited similar to 5.5-fold enhancement of plasmon signals compared with a similar coating on a plain glass surface. In summary, this article provides a quantitative comparison of carboxylated graphene with a mercapto-monolayer immunoassembly. Additionally, we propose that the binding-constant value can be useful as a quality-control checkpoint for reproducible and reliable production of large-scale biosensors for clinical bioassays.
机译:我们在这里介绍了表面 - 等离子体和电化学免疫测定与血清谷氨酸脱羧酶65自身抗体(GADA)的结合之间的皮摩尔亲子与型糖尿病(T1D)的生物标志物,其抗原GAD-65之间的相关性。在金表面等离子体芯片上或电化学阵列上的石墨烯改性免疫装配在金色表面 - 等离子芯片上提供明显较大的结合亲和力,更高的灵敏度和较低的检测限,比巯基丙酸(MPa)的自组装单层表面更高。通过共价标记的电活性氨基茂茂茂的估计相对表面-COOH基团的估计表明甲基烯基表面显示比MPa表面更大量的-COOH基团(9倍)。 X射线 - 光电子能谱分析显示在石墨烯-COOH表面上的更多C-O和C = O官能团,而不是在MPa表面上。与普通玻璃表面上类似的涂层相比,金的石墨烯-COOH涂层类似于等离子体信号的5.5倍的增强。总之,本文提供了用巯基 - 单层免疫组件的羧化石墨烯的定量比较。另外,我们提出结合恒定值可用作可再生和可靠地生产临床生物测定的大规模生物传感器的质量控制检查点。

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