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六方晶系 Au-Pd/石墨烯纳米复合材料生物传感器的制备及其在癌细胞 HO 检测中的应用。

Fabrication of hexahedral Au-Pd/graphene nanocomposites biosensor and its application in cancer cell HO detection.

机构信息

The Key Laboratory of Bioactive Materials, Ministry of Education, College of Life Science, Nankai University, Weijin Road No. 94, Tianjin 300071, PR China.

Institution of Entomology, College of Life Science, Nankai University, Tianjin 300071, PR China.

出版信息

Bioelectrochemistry. 2019 Aug;128:274-282. doi: 10.1016/j.bioelechem.2019.04.018. Epub 2019 Apr 26.

DOI:10.1016/j.bioelechem.2019.04.018
PMID:31059967
Abstract

Currently, real time monitoring of chemical substances in vivo and in vitro has gained enormous attraction, and many researches reports have been focused on the design and construction of high-performance biosensor devices. In this work, a high-performance sensor was constructed by taking advantage of the excellent electrochemical activity and high-index facets of Au-Pd nanocubes and the large surface of rGO. Glassy carbon electrodes (GCEs) were modified by both Au-Pd nanocubes and rGO nanocomposites via physical adsorption. Transmission electron microscopy (TEM) and X-ray diffraction (XRD) were utilized to characterize and identify this unique nanostructure. These three-dimensional nanocomposites possess a high electroactive surface area and an excellent electrical conductivity, which resulted in favorable electroreduction activity toward HO with a lower detection limit of 4 nM, a wide linear range from 0.005 μM to 3.5 mM and a rapid response time. Furthermore, the proposed sensor exhibited desirable performance in the detection of endogenous HO in human serum samples and real-time monitoring of HO released from living breast cancer cell lines. In summary, this work not only provides a potential method to construct a physiological and pathological HO biosensor but also makes a valuable contribution to the early diagnosis of different cancers.

摘要

目前,对体内和体外化学物质的实时监测引起了极大的关注,许多研究报告都集中在高性能生物传感器设备的设计和构建上。在这项工作中,利用 Au-Pd 纳米立方体的优异电化学活性和高指数面以及 rGO 的大表面积,构建了一种高性能传感器。通过物理吸附将玻碳电极 (GCE) 修饰为 Au-Pd 纳米立方体和 rGO 纳米复合材料。透射电子显微镜 (TEM) 和 X 射线衍射 (XRD) 用于对这种独特的纳米结构进行表征和鉴定。这些三维纳米复合材料具有高的电活性表面积和优异的导电性,这使得对 HO 具有有利的电还原活性,检测限低至 4 nM,线性范围从 0.005 μM 到 3.5 mM,响应时间快。此外,该传感器在人血清样本中内源性 HO 的检测和活乳腺癌细胞系中 HO 释放的实时监测中表现出良好的性能。总之,这项工作不仅提供了构建生理和病理 HO 生物传感器的潜在方法,而且为不同癌症的早期诊断做出了有价值的贡献。

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