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Improved antibody loading on self-assembled graphene oxide films for using in surface plasmon resonance immunosensors

机译:改进的抗体在自组装的石墨烯氧化物膜上加载,用于在表面等离子体共振免疫调子中使用

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Immunoassays are important for the diagnosis of many diseases. Efficient methods for the immobilization of the biorecognition elements is a relevant subject because the antibody loading is directly related to the detection range and sensitivity. Here different self-assembled films were explored to take advantage of polar oxygenated groups from graphene oxide (GO) structure. Surface plasmon resonance (SPR) sensors were modified with different GO self-assembled films and compared to the well-established thiol-functionalization with 11-MUA (11-mercaptoundecanoic acid). Self-assembled cysteamine/GO functionalized sensor (Cys-GO(SA)) provided the highest protein loading (7.66 x 10(-12) mol cm(-2) against 1.29 x 10(-11) mol cm(-2) for the traditional thiolfunctionalization). The Langmuir-Blodgett (LB) films of GO were composed of aggregates and empty spaces, which hindered the antibody anchoring (around 6.38 x 10(-12) to 3.45 x 10(-12) mol cm(-2)). The SPR response of the Cys-GO(SA)-modified sensor to the 4.0 ng mL(-1) PSA was 125% higher than the thiol-functionalized sensor at the same concentration. This result indicates a simple and promising surface modification strategy for many important applications, not limited to SPR sensors, but for all immunoreaction-based assays as enzyme-linked immunosorbent assay (ELISA), electrochemical (e.g. amperometric and impedimetric) and quartz crystal microbalance (QCM) based sensors.
机译:免疫测定对许多疾病的诊断很重要。用于固定生物认知元素的有效方法是相关的受试者,因为抗体负载与检测范围和灵敏度直接相关。这里探讨了不同的自组装薄膜,以利用石墨烯氧化物(GO)结构的极性含氧基团。用不同的去自组装薄膜改性表面等离子体共振(SPR)传感器,并与具有11-MUA(11-巯基苯甲酸)的良好的硫醇官能化进行比较。自组装的半胱胺/去功能化传感器(Cys-Go(SA))提供最高的蛋白质载荷(7.66×10(-12)摩尔cm(-2),均为1.29×10(-11)mol cm(-2)传统的硫醇官能化)。 Go的Langmuir-Blodgett(LB)薄膜由聚集体和空的空间组成,其阻碍了抗体锚定(约6.38×10(-12)至3.45×10(-12)摩尔Cm(-2))。 Cys-Go(SA)制态传感器的SPR响应与4.0 ng mL(-1)PSA的相同浓度高出125%高125%。该结果表明了许多重要应用的简单和有希望的表面改性策略,不限于SPR传感器,而是对于所有免疫反应的测定作为酶联免疫吸附测定(ELISA),电化学(例如amperometric和阻抗)和石英晶体微稳定(基于QCM)的传感器。

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