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基于噻吩-3-乙酸修饰的磷酸盐掺杂 BiWO 共聚物的敏感光电化学免疫传感器用于癌胚抗原检测

Sensitive photoelectrochemical immunosensor for carcinoembryonic antigen detection based on copolymer of thiophene and thiophene-3-acetic acid modified phosphate-doped BiWO.

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, Hubei Province, 430072, PR China.

Institute of Environmental and Health Sciences, China Jiliang University, Hangzhou, Zhejiang Province, 310018, PR China.

出版信息

Anal Chim Acta. 2023 Jun 29;1262:341243. doi: 10.1016/j.aca.2023.341243. Epub 2023 Apr 22.

DOI:10.1016/j.aca.2023.341243
PMID:37179060
Abstract

In this study, PO doped BiWO (BWO-PO) was prepared by hydrothermal method, and then copolymer of thiophene and thiophene-3-acetic acid (P(Th-T3A)) was chemically deposited on the BWO-PO surface. The introduction of PO created point defects, greatly improving the photoelectric catalytic performance of BiWO; the copolymer semiconductor could form heterojunction with BiWO to promote the separation of photo-generated carriers, due to its proper band gap. Furthermore, the copolymer could enhance the light absorption ability and photo-electronic conversion efficiency. Hence, the composite had good photoelectrochemical properties. When it was combined with carcinoembryonic antibody through the interaction of -COOH groups of the copolymer and the end groups of antibody for constructing ITO-based PEC immunosensor, the resulting sensor exhibited superb response to carcinoembryonic antigen (CEA), with a wide linear range of 1 pg/mL-20 ng/mL, and a relatively low detection limit of 0.41 pg/mL. It also showed high anti-interference ability, stability, and simplicity. The sensor has been successfully applied to monitor the concentration of CEA in serum. The sensing strategy can also be applied to the detection of other markers by changing the recognition elements, hence it has good application potential.

摘要

在这项研究中,采用水热法制备了 PO 掺杂的 BiWO(BWO-PO),然后通过化学沉积法将噻吩和 3-噻吩乙酸的共聚物(P(Th-T3A))沉积在 BWO-PO 表面。PO 的引入产生了点缺陷,极大地提高了 BiWO 的光电催化性能;共聚物半导体由于其适当的能带隙,可以与 BiWO 形成异质结,促进光生载流子的分离。此外,共聚物可以增强光吸收能力和光电转换效率。因此,该复合材料具有良好的光电化学性能。当它通过共聚物的-COOH 基团与抗体末端基团的相互作用与癌胚抗原(CEA)结合,构建基于 ITO 的 PEC 免疫传感器时,所得传感器对癌胚抗原(CEA)表现出优异的响应,线性范围为 1 pg/mL-20 ng/mL,检测限相对较低,为 0.41 pg/mL。它还表现出高抗干扰能力、稳定性和简单性。该传感器已成功应用于监测血清中 CEA 的浓度。通过改变识别元件,该传感策略还可以应用于其他标志物的检测,因此具有良好的应用潜力。

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