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Highly sensitive carboxyl-graphene oxide-based surface plasmon resonance immunosensor for the detection of lung cancer for cytokeratin 19 biomarker in human plasma

机译:基于高灵敏度的基于氧化石墨烯的表面等离振子共振免疫传感器,用于检测人血浆中细胞角蛋白19生物标志物的肺癌

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摘要

Functionalized graphene oxide is a novel type of highly efficient biosensing material. In this study, we present a carboxyl-functionalized graphene oxide (GO-COOH)-based surface plasmon resonance (SPR) chip for the rapid and quantitative detection of non-small cell lung carcinoma (NSCLC) via the cytolerayin 19 (CK19) protein biomarker in spiked human plasma. We demonstrated the binding specificity of kinetic analysis of interactions between GO-COOH and anti-CK19 and CK19 protein. We also calculated the relationship between the SPR angle and refractive index of GO-COOH, and demonstrated that COOH modified GO sheets on Au film can enhance the field energy propagation intensity of an SPR sensor, resulting in a higher sensitivity for the detection of CK19 protein compared to a conventional Au-based SPR chip. The immunosensor was constructed and engineered by immobilizing a low concentration (10 μg/mL) of CK19 antibody on an SPR chip. The lowest detectable concentration was as low as 1 fg/mL. A spiked 10% human plasma CK19 detection limit of 0.05 pg/mL was achieved, well below the normal physiological level of serum protein (3.3 ng/mL). Therefore, a carboxyl-GO based SPR biosensor appears to have high sensitivity and specificity for the detection of clinical whole plasma biomarkers and possible application in diagnosing diseases.
机译:功能化的氧化石墨烯是一种新型的高效生物传感材料。在这项研究中,我们提出了一种基于羧基官能化氧化石墨烯(GO-COOH)的表面等离子体共振(SPR)芯片,用于通过细胞黏蛋白19(CK19)蛋白快速定量检测非小细胞肺癌(NSCLC)。人体血浆中的生物标志物。我们证明了GO-COOH与抗CK19和CK19蛋白之间相互作用的动力学分析的结合特异性。我们还计算了SPR角与GO-COOH折射率之间的关系,并证明了在金膜上进行COOH改性的GO片可以增强SPR传感器的场能量传播强度,从而对CK19蛋白的检测具有更高的灵敏度。与传统的基于Au的SPR芯片相比。通过将低浓度(10μg/ mL)CK19抗体固定在SPR芯片上来构建和改造免疫传感器。最低可检测浓度低至1 fg / mL。人血浆CK19的检出限达到10%的加标浓度为0.05μpg/ mL,远低于血清蛋白的正常生理水平(3.3μng/ mL)。因此,基于羧基GO的SPR生物传感器似乎对于临床全血浆生物标志物的检测以及在疾病诊断中的可能应用具有高灵敏度和特异性。

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