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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Three-dimensional porous microarray of gold modified electrode for ultrasensitive and simultaneous assay of various cancer biomarkers
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Three-dimensional porous microarray of gold modified electrode for ultrasensitive and simultaneous assay of various cancer biomarkers

机译:金修饰电极的三维多孔微阵列,用于多种癌症生物标记物的超灵敏和同时测定

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摘要

A three-dimensional (3D) microarray of a gold modified electrode with a nanoporous surface was successfully fabricated in this work. The special gold microanostructure possessed an extremely high surface area (ca. 20 times its geometrical area), as well as highly stable and easily chemically modified properties, which could distinctly increase the binding sites for biological probes, facilitate the diffusion profile and enhance the electron transfer. Owing to these advantages, an ultrasensitive biosensor was designed on the porous microarray of the gold modified electrode (PMGE), which realized the simultaneous assay of cancer biomarkers of angiogenin (Ang) and thrombin (Tob). Under optimal experimental conditions, an impressively ultralow detection limit of 0.07 pM for Ang (a linear range from 0.2 pM to 10 nM) and a limit of 20 fM for Tob (a linear range from 50 fM to 5 nM) were obtained. Besides, the fabricated biosensor showed an excellent stability, good reproducibility and a high selectivity towards other biological proteins, which also exhibited promising potential for the application in a real serum sample analysis. Such a microanostructure of gold could have widespread applications in biological sensing and quantitative biochemical analysis.
机译:在这项工作中成功地制作了具有纳米多孔表面的金修饰电极的三维(3D)微阵列。特殊的金微/纳米结构具有极高的表面积(约为其几何面积的20倍),以及高度稳定且易于化学修饰的特性,可显着增加生物探针的结合位点,促进扩散并增强电子转移。由于这些优点,在​​金修饰电极(PMGE)的多孔微阵列上设计了一种超灵敏生物传感器,该传感器可同时检测血管生成素(Ang)和凝血酶(Tob)的癌症生物标志物。在最佳实验条件下,获得了Ang的0.07 pM的超低检测极限(0.2 pM到10 nM的线性范围)和Tob的20 fM的极限(50 fM到5 nM的线性范围)。此外,所制备的生物传感器显示出极好的稳定性,良好的重现性和对其他生物蛋白的高选择性,在实际血清样品分析中的应用也显示出了广阔的前景。这种金的微观/纳米结构可以在生物传感和定量生化分析中广泛应用。

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