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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >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
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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

机译:Au纳米型/ ZnO纳米棒的双信号放大策略杂交的石墨烯纳米晶纳米晶纳米液和钼官能化Au @ ZnO复合材料,用于肿瘤生物标志物的超敏电化学检测

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摘要

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(2)) functionalized Au@ZnO (Ab(2)/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(1)) were immobilized on the electrode surface, and trace AFP was sensitively monitored. Furthermore, Ab(2)/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 10,000-100,000 pg mL(-1) AFP with a lower detection limit of 0.01 pg mL(-1) (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.
机译:在此,采用双信号放大策略在制造用于α胎儿(AFP)检测的超敏电化学免疫传感器,其通过利用ZnO纳米棒/ Au纳米型杂交的还原的石墨烯纳米晶片(Au / ZnO / Rgo)和辣根 - 过氧化物酶(HRP )生物缀合的检测抗体(AB(2))官能化Au @ ZnO(AB(2)/ HRP-Au @ ZnO)。在制造免疫传感器期间,具有不同烷基链长度的新种类的多头表面活性剂CXN3起到了重要的作用,例如用作Au / ZnO / Rgo的表面活性剂和Au @ ZnO复合材料的还原剂。由于Au / ZnO / Rgo的良好吸附性和大表面积,将大量的捕获抗体(AB(1))固定在电极表面上,并且敏感地监测痕量AFP。此外,AB(2)/ HRP-Au @ ZnO与AUP ZnO的过氧化物酶样催化活性以及Au @ ZnO的过氧化物酶样催化活性表现出高亲和力相互作用,从而进一步增强了所提出的免疫传感器的敏感性。通过具有拉曼,XRD,FT-IR,SEM和UV Vis的严重技术,成功合成纳米材料的特征在于。在最佳条件下,得到的两个线性范围为0.02-10,000和10,000-100,000pg ml(-1)AFP,检测限为0.01pg ml(-1)(s / n = 3)。特别是,所提出的AFP免疫传感器可以应用以检测​​人血清样品,结果令人满意,表明肿瘤生物标志物的临床监测潜在应用。

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