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基于双金属铂钯纳米酶的比色传感器阵列用于同时鉴别多种抗氧化剂。

Colorimetric sensor array based on a bimetallic PtPd nanozyme for simultaneous discrimination of multiple antioxidants.

作者信息

Liu Jia, Chen Xin-Yue, Chen Juan

机构信息

School of Pharmacy, Lanzhou University, Lanzhou 730000, PR China.

School of Pharmacy, Lanzhou University, Lanzhou 730000, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2026 Jan 15;345:126833. doi: 10.1016/j.saa.2025.126833. Epub 2025 Aug 15.

Abstract

The identification and quantification of antioxidant species are of paramount importance, as these compounds play vital roles in regulating redox balance, cellular signaling, immune responses, and their abnormal levels serve as crucial markers in the onset the progression of various diseases. Traditional single-analyte detection methods often suffer from limited specificity and are incapable of capturing the complexity of biological systems involving multiple coexisting antioxidants. In contrast, colorimetric sensor arrays offer a powerful alternative by generating unique, fingerprint-like response patterns that enable the simultaneous detection and differentiation of structurally or functionally similar analytes. In this study, we developed a triple-channel colorimetric sensor array utilizing a bimetallic PtPd nanozyme with peroxidase-mimicking activity and 3,3',5,5'-tetramethylbenzidine (TMB) as the chromogenic substrate. By strategically incorporating three distinct pH conditions as independent sensing channels, the system generated differential colorimetric responses that enabled both the qualitative discrimination and quantitative analysis of five representative antioxidants: ascorbic acid (AA), citric acid (CA), cysteine (CYS), tannic acid (TA), and uric acid (UA). The sensor array demonstrated excellent selectivity, sensitivity, and reproducibility in complex sample environments. Its performance was rigorously validated through successful identification of target antioxidants in human serum samples, as well as in binary, ternary, and multicomponent mixtures. These findings highlight the strong discriminative capability and real-sample applicability of the proposed PtPd nanozyme-based colorimetric sensor arrays, underscoring its great promise as a versatile platform for biomedical diagnostics, disease biomarker screening, and antioxidant-related health monitoring.

摘要

抗氧化剂种类的识别和定量至关重要,因为这些化合物在调节氧化还原平衡、细胞信号传导、免疫反应中发挥着关键作用,其异常水平是各种疾病发生和发展的重要标志物。传统的单分析物检测方法往往特异性有限,无法捕捉涉及多种共存抗氧化剂的生物系统的复杂性。相比之下,比色传感器阵列提供了一种强大的替代方法,通过生成独特的、类似指纹的响应模式,能够同时检测和区分结构或功能相似的分析物。在本研究中,我们开发了一种三通道比色传感器阵列,利用具有过氧化物酶模拟活性的双金属PtPd纳米酶和3,3',5,5'-四甲基联苯胺(TMB)作为显色底物。通过策略性地纳入三种不同的pH条件作为独立的传感通道,该系统产生了差异比色响应,能够对五种代表性抗氧化剂进行定性鉴别和定量分析:抗坏血酸(AA)、柠檬酸(CA)、半胱氨酸(CYS)、单宁酸(TA)和尿酸(UA)。该传感器阵列在复杂样品环境中表现出优异的选择性、灵敏度和重现性。通过在人血清样品以及二元、三元和多组分混合物中成功识别目标抗氧化剂,对其性能进行了严格验证。这些发现突出了所提出的基于PtPd纳米酶的比色传感器阵列的强大鉴别能力和实际样品适用性,强调了其作为生物医学诊断、疾病生物标志物筛选和抗氧化剂相关健康监测的通用平台的巨大潜力。

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