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一种新型碳量子点信号放大策略结合三明治电化学发光免疫传感器用于人血清中 CA15-3 的检测。

A Novel Carbon Quantum Dots Signal Amplification Strategy Coupled with Sandwich Electrochemiluminescence Immunosensor for the Detection of CA15-3 in Human Serum.

机构信息

Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources (Ministry of Education of China), School of Chemistry and Pharmaceutical Sciences , Guangxi Normal University , Guilin 541004 China.

出版信息

ACS Sens. 2019 Feb 22;4(2):504-512. doi: 10.1021/acssensors.8b01607. Epub 2019 Feb 12.

Abstract

A sensitive sandwich electrochemiluminescence immunosensor was established by employing graphene oxide-PEI-carbon quantum dots (CQDs)-Au nanohybrid as probe to measure carbohydrate antigen 15-3 (CA15-3), a breast cancer biomarker. In this work, nanocomposites of Ag nanoparticles and polydopamine (AgNPs-PDA) were synthesized by redox reaction between dopamine and Ag. The nanocomposite with high surface area can provide an efficient substrate for immobilizing initial antibody (Ab1). Carbon quantum dots (CQDs) are fixed on polyethylenimine-functionalized graphene oxide (PEI-GO) by amide bonds. Au nanoparticles are modified on CQDs-decorated PEI-GO substrates. The secondary antibody (Ab2) was immobilized by AuNPs/CQDs-PEI-GO composite. CQDs can be assembled onto the surface of an electrode by incorporation of CA15-3 with Ab1 and Ab2. Under the synergistic action of AgNPs, polydopamine, AuNPs, and PEI-GO, the ECL signal of CQDs is greatly amplified as an excellent conductive material to facilitate electron transfer rate and further increase electrochemical detection capability. Under optimal conditions, the fabricated immunosensor showed a linear concentration range from 0.005 to 500 U mL, with a detection limit of 0.0017 U mL (signal-to-noise ratio of 3) for CA15-3. The designed ECL immunosensor displayed receivable accuracy, excellent stability, and high specificity. The results of the detection of human serum samples are satisfactory, revealing that the method offers a potential application for the clinical diagnosis of tumor markers.

摘要

一种灵敏的三明治型电化学发光免疫传感器,通过采用氧化石墨烯-聚乙烯亚胺-碳量子点-金纳米杂化体作为探针,来测量糖链抗原 15-3(CA15-3),一种乳腺癌生物标志物。在这项工作中,通过多巴胺和 Ag 之间的氧化还原反应合成了纳米复合材料 Ag 纳米粒子和聚多巴胺(AgNPs-PDA)。具有高表面积的纳米复合材料可以为固定初始抗体(Ab1)提供有效的基底。碳量子点(CQDs)通过酰胺键固定在聚乙烯亚胺功能化氧化石墨烯(PEI-GO)上。Au 纳米粒子修饰在 CQDs 修饰的 PEI-GO 基底上。通过 AuNPs/CQDs-PEI-GO 复合材料固定二抗(Ab2)。通过 Ab1 和 Ab2 与 CA15-3 的结合,将 CQDs 组装到电极表面上。在 AgNPs、聚多巴胺、AuNPs 和 PEI-GO 的协同作用下,CQDs 的 ECL 信号被大大放大,作为一种优异的导电材料,促进了电子转移率,并进一步提高了电化学检测能力。在最佳条件下,所构建的免疫传感器表现出从 0.005 到 500 U mL 的线性浓度范围,对 CA15-3 的检测限为 0.0017 U mL(信噪比为 3)。设计的 ECL 免疫传感器显示出可接受的准确性、优异的稳定性和高特异性。对人血清样本的检测结果令人满意,表明该方法为肿瘤标志物的临床诊断提供了一种潜在的应用。

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