铕掺杂氧化铈纳米晶体作为纳米酶荧光探针用于生物传感

Ali Othman, A. Hayat, S. Andreescu
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引用次数: 0

摘要

具有内在酶样活性的分子纳米探针代表了快速、灵敏检测分子靶标的新技术浪潮。本文报道了具有自集成催化和荧光传感功能的新型分散良好的铕掺杂铈纳米晶体(EuCe NCs)的合成和表征。NCs的平均尺寸为~ 5 nm,在水介质中表现出明亮和稳定的荧光,持续时间超过6个月。探索它们作为催化剂和荧光探针的双重协同功能,以开发一种普遍适用的基于荧光的生物传感方法来监测酶反应和定量测量临床相关分子。检测H2O2、葡萄糖/葡萄糖氧化酶、乳酸/乳酸氧化酶、磷酸酶活性和儿茶酚胺神经递质多巴胺的传感能力。结果表明,EuCe NCs不仅具有较高的模拟酶活性,而且具有直接荧光传感能力,能够实现一体化识别、催化扩增和生物分子靶标检测。EuCe纳米酶为基于天然酶和荧光染料联合使用的更复杂的系统提供了一种稳定的替代方案。高稳定性和荧光检测能力表明,EuCe NCs有潜力被用作化学和生物传感和生物成像应用的通用平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Europium-Doped Ceria Nanocrystals as Nanozyme Fluorescent Probes for Biosensing
Molecular nanoprobes with intrinsic enzyme-like activity represent a new wave of technology for rapid and sensitive detection of molecular targets. This work reports synthesis and characterization of novel and well-dispersed europium-doped ceria nanocrystals (EuCe NCs) with self-integrated catalytic and fluorescence sensing functions. The NCs have an average size of ∼5 nm and exhibit bright and stable fluorescence for more than 6 months in aqueous media. Their dual cooperative function as both a catalyst and fluorescent probe was explored to develop a universally applicable fluorescence-based biosensing method to monitor enzyme reactions and quantitatively measure clinically relevant molecules. Sensing capabilities are demonstrated for detection of H2O2, glucose/glucose oxidase, lactate/lactate oxidase, phosphatase activity, and the catecholamine neurotransmitter, dopamine. Results indicate that EuCe NCs not only provide high enzyme-mimetic activity, but also impart direct fluorescence sensing ability enabling all-in-one recognition, catalytic amplification, and the detection of biomolecular targets. The EuCe nanozyme offers a stable alternative to the more complex systems based on the combined use of natural enzymes and fluorescent dyes. The high stability and fluorescence detection capabilities demonstrate that EuCe NCs have the potential to be used as a generic platform in chemical and biological sensing and bioimaging applications.
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