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首页> 外文期刊>Chemistry: A European journal >A Ternary Composite Based on Graphene, Hemin, and Gold Nanorods with High Catalytic Activity for the Detection of Cell-Surface Glycan Expression
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A Ternary Composite Based on Graphene, Hemin, and Gold Nanorods with High Catalytic Activity for the Detection of Cell-Surface Glycan Expression

机译:基于高催化活性的石墨烯,血红素和金纳米棒的三元复合物,用于检测细胞表面聚糖的表达

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摘要

A novel graphene-family ternary composite with high catalytic activity has been developed by using simple synthetic methods. The graphene-based ternary composite has abundant positively charged Au NRs, which greatly improved the catalytic properties of the graphene-family of peroxidase mimetics, because of the high electron-transfer rate of graphene and the synergistic interaction of three components. Sensitive detection of glycan expression on K562 cell surface can be achieved with a low detection limit of 10 cells. This finding constitutes a novel graphene-family hybrid nanomaterials-based peroxidase mimetic that is expected to be applied widely in the construction of simple, sensitive, and selective biosensors for nucleic acids and proteins both inside and outside of cells through catalytic reaction of H2O2.
机译:通过使用简单的合成方法,已开发出具有高催化活性的新型石墨烯-家族三元复合材料。石墨烯基三元复合材料具有丰富的带正电的金NR,由于石墨烯的高电子转移速率和三组分的协同相互作用,极大地改善了过氧化物酶模拟物的石墨烯家族的催化性能。低检测限(10个细胞)可以实现K562细胞表面聚糖表达的灵敏检测。这一发现构成了一种新型的基于石墨烯-家族杂化纳米材料的过氧化物酶模拟物,有望通过H2O2的催化反应,广泛应用于构建细胞内外核酸和蛋白质的简单,灵敏和选择性的生物传感器。

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