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基于金纳米粒子/氧化锌纳米棒杂化还原氧化石墨烯和多酶功能化 Au@ZnO 复合材料的双重信号放大策略用于肿瘤标志物的超灵敏电化学检测。

Dual signal amplification strategy of Au nanopaticles/ZnO nanorods hybridized reduced graphene nanosheet and multienzyme functionalized Au@ZnO composites for ultrasensitive electrochemical detection of tumor biomarker.

机构信息

School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences, 19A YuQuan Road, Beijing 100049, China.

School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences, 19A YuQuan Road, Beijing 100049, China.

出版信息

Biosens Bioelectron. 2017 Nov 15;97:218-225. doi: 10.1016/j.bios.2017.05.055. Epub 2017 May 31.

DOI:10.1016/j.bios.2017.05.055
PMID:28600990
Abstract

Herein, a dual signal amplification strategy was employed in fabricating ultrasensitive electrochemical immunosensor for alpha fetoprotein (AFP) detection, which was realized by utilizing of ZnO nanorods/Au nanopaticles hybridized reduced graphene nanosheet (Au/ZnO/RGO) and horseradish-peroxidase (HRP) bioconjugated detection antibody (Ab) functionalized Au@ZnO (Ab/HRP-Au@ZnO). During the fabrication of the immunosensor, a new kind of multiple-head surfactants CxN3 with different alkyl chain length played important roles such as acting as the surfactants of Au/ZnO/RGO and the reductant agents of Au@ZnO composite. Due to the good adsorption property and large surface area of Au/ZnO/RGO, plenty of the capture antibodies (Ab) were immobilized on the electrode surface, and trace AFP was sensitively monitored. Furthermore, Ab/HRP-Au@ZnO exhibited high affinity interaction with AFP through "sandwich" immunoreactions, along with the peroxidase-like catalytic activity of Au@ZnO, leading to a further enhancement in the sensitivity of the proposed immunosensor. The successful synthesis of the nanomaterials was characterized through a serious of techniques including Raman, XRD, FT-IR, SEM and UV-vis. Under the optimal conditions, two linear ranges of 0.02-10,000 and 10,000-100,000pgmL AFP with a lower detection limit of 0.01pg mL (S/N=3) was obtained. Especially, the proposed AFP immunosensor can be applied to detect human serum samples with satisfactory results, indicating a potential application in clinical monitoring of tumor biomarkers.

摘要

在此,我们构建了一种双信号放大策略,用于制造超灵敏的电化学免疫传感器,用于检测甲胎蛋白(AFP),该策略通过利用 ZnO 纳米棒/Au 纳米颗粒杂化还原氧化石墨烯(Au/ZnO/RGO)和辣根过氧化物酶(HRP)标记的检测抗体(Ab)功能化的 Au@ZnO(Ab/HRP-Au@ZnO)来实现。在免疫传感器的构建过程中,新型的 CxN3 多臂表面活性剂具有不同的烷基链长度,在 Au/ZnO/RGO 的表面活性剂和 Au@ZnO 复合材料的还原剂等方面发挥了重要作用。由于 Au/ZnO/RGO 具有良好的吸附性能和较大的比表面积,因此可以在电极表面固定大量的捕获抗体(Ab),从而可以灵敏地监测痕量 AFP。此外,Ab/HRP-Au@ZnO 通过“三明治”免疫反应与 AFP 表现出高亲和力相互作用,同时由于 Au@ZnO 的过氧化物酶样催化活性,进一步提高了所提出的免疫传感器的灵敏度。通过拉曼、XRD、FT-IR、SEM 和 UV-vis 等一系列技术对纳米材料的成功合成进行了表征。在最佳条件下,该免疫传感器对 AFP 的检测范围为 0.02-10,000pg mL 和 10,000-100,000pg mL,检测限为 0.01pg mL(S/N=3)。特别地,该 AFP 免疫传感器可用于检测人血清样品,结果令人满意,表明其在肿瘤生物标志物的临床监测中具有潜在的应用价值。

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