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Rational Development of Co-Doped Mesoporous Ceria with High Peroxidase-Mimicking Activity at Neutral Ph for Paper-Based Colorimetric Detection of Multiple Biomarkers

机译:合理开发中性pH下具有高过氧化物酶模拟活性的共掺杂介孔铈,用于多种生物标志物的纸基比色检测

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摘要

Peroxidase-mimicking nanozymes have been extensively studied, however, their application is limited by the requirement for an acidic pH. Herein, the development of Co-doped mesoporous cerium oxide (Co-m-ceria) is reported, which operates optimally at a near-neutral pH and exhibits a peroxidase-like catalytic efficiency that is 600-times higher than that of pristine m-ceria. Density functional theory (DFT) calculations for the application of pristine and various metal-doped m-ceria in peroxidase-like reactions under different pH environments are conducted to select Co as the appropriate dopant. The high peroxidase-like activity of Co-m-ceria under neutral conditions and its mesoporous nature enable its application in a one-pot cascade reaction system, wherein biomarkers of oxidative enzymes can be detected without altering the pH. Five different oxidative enzymes are immobilized in the pores of Co-m-ceria at high loadings, followed by incorporation of the enzyme-containing Co-m-ceria in paper microfluidic devices for the convenient and simultaneous detection of multiple biomarkers. The Co-m-ceria-incorporated paper microfluidic device enables the selective and sensitive determination of multiple biomarkers using a smartphone-acquired image. This study demonstrates the potential of the rational design of nanozymes and their application in paper microfluidic devices, laying the groundwork for future applications of nanozymes in point-of-care testing environments.
机译:模拟过氧化物酶的纳米酶已被广泛研究,然而,它们的应用受到酸性pH值要求的限制。本文报道了共掺杂介孔氧化铈(Co-m-ceria)的发展,该氧化铈在接近中性的pH值下发挥最佳作用,并表现出过氧化物酶样催化效率,比原始m-ceria高600倍。通过密度泛函理论(DFT)计算了不同pH环境下纯金属和各种金属掺杂间铈在过氧化物酶样反应中的应用,选择Co作为合适的掺杂剂。Co-m-ceria 在中性条件下的高过氧化物酶样活性及其介孔性质使其能够在一锅级联反应系统中应用,其中可以在不改变 pH 值的情况下检测氧化酶的生物标志物。将五种不同的氧化酶以高负荷固定在Co-m-ceria的孔隙中,然后将含酶的Co-m-ceria掺入纸微流控装置中,以便方便地同时检测多种生物标志物。结合 Co-m-ceria 的纸质微流控设备能够使用智能手机采集的图像选择性和灵敏地测定多种生物标志物。本研究证明了纳米酶的合理设计及其在纸质微流控器件中的应用潜力,为纳米酶未来在床旁检测环境中的应用奠定了基础。

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