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Functional Biointerfaces Based on Mixed Zwitterionic Self-Assembled Monolayers for Biosensing Applications

机译:基于混合两性离子自组装单层的功能性生物界面进行生物传感应用

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Surface modification for biosensors has focused attention for improvement of their sensitivity and specificity, particularly for the detection in complex medium. In this work, we have synthesized zwitterionic carboxybetaine-thiols (CB-thiols) and sulfobetaine-thiols (SB-thiols) for modification of gold substrates to form a functional self-assembled monolayer (SAM) for the immunoassay in a surface plasmon resonance (SPR) biosensor. X-ray photoelectron spectroscopy (XPS), contact angle goniometer, and cyclic voltammetry were applied for characterizations of elemental composition, surface wettability, and packing density, respectively. The antifouling properties of the SAMs were accessed by quantitative analysis of protein and bacterial adsorption. The results from the SAMs with a single component indicated that the SB-thiol SAM provides better surface hydrophilicity, fouling resistance, and packing density as compared to the CB-thiol SAM, likely due to the ionic association of CB moieties. However, the CB-thiol with the functional carboxylate group plays a critical role in postmodification of biomolecules via commercially available amine coupling chemistry. Thus, the mixed SAMs were prepared to integrate the unique characteristics from CB- and SB-thiols to control compositions and surface properties. The immunoassay was performed in the SPR biosensor, showing that the zwitterionic mixed SAM enables immobilization of biorecognition elements (BREs), and improved sensitivity and specificity. Consequently, the work reveals excellent and attractive versatility, antifouling, and functionalizable properties of zwitterionic mixed SAMs comprising CB- and SB-thiols for biosensing applications. This surface chemistry is expected to be applicable to monitor specific molecular recognition events.
机译:生物传感器的表面改性集中注意改善它们的敏感性和特异性,特别是在复杂介质中的检测。在这项工作中,我们已经合成了两性离子羧基丙酮 - 硫醇(CB-Thiols)和磺基因 - 硫醇(Sb-Thiols),用于改性金基材以形成表面等离子体共振中的免疫测定的功能性自组装单层(SAM)( SPR)生物传感器。 X射线光电子体光谱(XPS),接触角测筒仪和循环伏安分别用于分别表征元素组成,表面润湿性和包装密度的特征。通过蛋白质和细菌吸附的定量分析来获得SAM的防污性能。与CB-Thiol SAM相比,SAM具有单个组分的SAM的结果表明,与CB部分的离子关联可能由于CB-Thiol SAM相比,Sb-Thiol Sam提供更好的表面亲水性,污垢阻力和包装密度。然而,具有官能羧酸酯基团的CB-Thiol在通过市售的胺偶联化学在生物分子的后修改中起着关键作用。因此,制备混合的SAM以将来自CB-和Sb硫醇的独特特征与控制组合物和表面性质相容。在SPR生物传感器中进行免疫测定,表明两性离子混合型SAM能够固定生物释认元素(BRES),并改善敏感性和特异性。因此,该作品揭示了两性离子混合SAM的优异且具有吸引力的多功能性,防污和官能化性质,其包含用于生物传感应用的CB-和Sb-硫醇。该表面化学预计适用于监测特定的分子识别事件。

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