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一种用于灵敏检测癌胚抗原的新型基于BiMoO纳米银耳的电化学免疫传感器。

A new BiMoO nano-tremella-based electrochemical immunosensor for the sensitive detection of a carcinoembryonic antigen.

作者信息

Wang Zhongmin, Tian Xinli, Sun Dong, Cao Penghui, Ding Mengkui, Li Yuhao, Guo Ning, Ouyang Ruizhuo, Miao Yuqing

机构信息

Institute of Bismuth Science, The University of Shanghai for Science and Technology Shanghai 200093 China

School of Chemistry and Chemical Engineering, Henan Normal University Xinxiang 453007 China.

出版信息

RSC Adv. 2020 Apr 21;10(27):15870-15880. doi: 10.1039/d0ra01922d.

Abstract

By doping molybdenum (Mo) into bismuth oxide (BiO), we synthesized novel BiMoO nanohybrids with a unique tremella-like crystal structure a one-pot hydrothermal method. Such a porous tremella structure of BiMoO possesses a significantly larger surface area than the spherical structure of BiO, which is favorable for the special functionalization and effective immobilization of molecules such as antibodies on the surface of the tremella flaps. As expected, Au nanoparticles grew easily and uniformly outside the surface of the flaps of the as-prepared BiMoO NTs (Au@BiMoO NTs), showing preferable conductivity and biocompatibility, and the anti-carcinoembryonic antigen (anti-CEA) was effectively immobilized outside the obtained Au@BiMoO NTs. Acting as a novel label-free immunosensing platform, the anti-CEA-immobilized Au@BiMoO NTs were used to fabricate an electrochemical immunosensor for the quantitative detection of CEA. The as-prepared Au@BiMoO-based immunosensor linearly responded to CEA in a wide concentration range from 1 pg mL to 1 μg mL with a detection limit calculated to be 0.3 pg mL (S/N = 3), significantly comparable to numerous existing immunosensors. Moreover, the minimum detection concentration of the designed immunosensor was about ten times smaller than that of many Bi and Mo-based sensors toward CEA detection, and the detection limit was lower, revealing higher sensitivity. The satisfactory selectivity and stability made the immunosensor potentially applicable for CEA detection in real samples.

摘要

通过将钼(Mo)掺杂到氧化铋(BiO)中,我们采用一锅水热法合成了具有独特银耳状晶体结构的新型BiMoO纳米杂化物。BiMoO的这种多孔银耳结构比BiO的球形结构具有显著更大的表面积,这有利于分子如抗体在银耳瓣表面的特殊功能化和有效固定。正如预期的那样,金纳米颗粒很容易且均匀地生长在制备好的BiMoO纳米管(Au@BiMoO NTs)的瓣表面之外,显示出较好的导电性和生物相容性,并且抗癌胚抗原(anti-CEA)被有效地固定在所得的Au@BiMoO NTs之外。作为一种新型的无标记免疫传感平台,固定有anti-CEA的Au@BiMoO NTs被用于制造一种用于定量检测CEA的电化学免疫传感器。所制备的基于Au@BiMoO的免疫传感器在1 pg mL至1 μg mL的宽浓度范围内对CEA呈线性响应,计算得出的检测限为0.3 pg mL(S/N = 3),与众多现有的免疫传感器相当。此外,所设计的免疫传感器的最低检测浓度比许多基于Bi和Mo的用于CEA检测的传感器低约十倍,并且检测限更低,显示出更高的灵敏度。令人满意的选择性和稳定性使得该免疫传感器有可能适用于实际样品中CEA的检测。

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