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首页> 外文期刊>Analytical chemistry >Paper-Based Device for Colorimetric and Photoelectrochemical Quantification of the Flux of H2O2 Releasing from MCF-7 Cancer Cells
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Paper-Based Device for Colorimetric and Photoelectrochemical Quantification of the Flux of H2O2 Releasing from MCF-7 Cancer Cells

机译:纸基设备用于比色和光电化学定量从MCF-7癌细胞释放的H2O2的通量

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摘要

In this work, a novel dual photoelectrochemical/colorimetric cyto-analysis format was first introduced into a microfluidic paper-based analytical device (mu-PAD) for synchronous sensitive and visual detection of H2O2 released from tumor cells based on an in situ hydroxyl radicals ((OH)-O-center dot) cleaving DNA approach. The resulted mu-PAD offered an excellent platform for high-performance biosensing applications, which was constructed by a layer-by-layer modification of concanavalin A, graphene quantum dots (GQDs) labeled flower-like Au@Pd alloy nanoparticles (NPs) probe, and tumor cells on the surface of the vertically aligned bamboo like ZnO, which grows on a pyknotic Pt NPs modified paper working electrode (ZnO/Pt-PWE). It was the effective matching of energy levels between GQDs and ZnO levels that lead to the enhancement of the photocurrent response compared with the bare. ZnO/Pt-PWE. After releasing H2O2, the DNA strand was cleaved by (OH)-O-center dot generated under the Synergistic catalysis of GQDs and Au@Pd alloy NPs and thus, reduced the photocurrent, resulting in a high sensitivity to H2O2 in aqueous solutions with a detection limit of 0.05 nmol observed, much lower than that in the previously reported method. The disengaged probe can result in catalytic chromogenic reaction of substrates, resulting in real-time imaging of H2O2 biological processes. Therefore, this work provided a truly low-cost, simple, and disposable p-PAD for precise and visual detection of cellular H2O2, which had potential utility to cellular biology and pathophysiology.
机译:在这项工作中,新型双光电化学/比色细胞分析格式首次引入基于微流纸的分析设​​备(mu-PAD)中,用于基于原位羟基自由基同步灵敏地目测从肿瘤细胞释放的H2O2( (OH)-O-中心点)切割DNA方法。所得的mu-PAD通过对伴刀豆球蛋白A,石墨烯量子点(GQDs)标记为花状Au @ Pd合金纳米颗粒(NPs)探针的逐层修饰而构建,为高性能生物传感应用提供了一个出色的平台。 ,以及在垂直排列的竹子状ZnO上生长的肿瘤细胞,其生长在强固的Pt NPs修饰纸工作电极(ZnO / Pt-PWE)上。 GQD和ZnO能级之间的能级有效匹配导致光电流响应比裸光增强。 ZnO / Pt-PWE。释放H2O2后,DNA链被在GQD和Au @ Pd合金NP的协同催化下产生的(OH)-O-中心点切割,从而降低了光电流,从而导致对H2O2的水溶液具有高敏感性。检出限为0.05 nmol,远低于以前报道的方法。脱离的探针可导致底物的催化显色反应,从而导致H2O2生物过程的实时成像。因此,这项工作为细胞H2O2的精确和视觉检测提供了真正低成本,简单易用的p-PAD,对细胞生物学和病理生理学具有潜在的实用价值。

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