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基于铂纳米酶的比色法测定唾液总抗氧化水平。

Platinum Nanozyme-Enabled Colorimetric Determination of Total Antioxidant Level in Saliva.

机构信息

Istituto Italiano di Tecnologia, Nanobiointeractions & Nanodiagnostics, Via Morego 30, 16163 Genova, Italy.

Istituto Italiano di Tecnologia, Nanobiointeractions & Nanodiagnostics, Center for Bio-Molecular Nanotechnologies, Via Barsanti 14, 73010 Arnesano, Lecce, Italy.

出版信息

Anal Chem. 2020 Jul 7;92(13):8660-8664. doi: 10.1021/acs.analchem.0c01824. Epub 2020 Jun 8.

Abstract

Redox imbalance and oxidative stress-related biomarkers are raising increasing consensus in the scientific community for their significant role in a wide range of human disorders. In this framework, the total antioxidant capacity (TAC), namely, the overall pattern of both enzymatic and nonenzymatic antioxidant compounds within the body, represents an important bioanalytical parameter. To date, however, antioxidant assays require costly instrumentations, laboratory setups, and reagents, and they are invasive. Yet, their accuracy typically suffers from strong sensitivity to interfering matrices and inability to detect the complete pattern of physiological antioxidant molecules, due to the use of reaction schemes and probes/substrates that are not sensitive to the diverse range of relevant target species. Here, we exploit the enzyme-mimetic properties of platinum nanoparticles combined with hydroxyl radical probes produced at the particle surface to develop an effective detection scheme that is sensitive to both single electron transfer (SET) and hydrogen atom transfer (HAT) reactions, thus covering all the physiologically relevant antioxidant species. Importantly, the nanozyme-enabled method allows fast (5 min), accurate, and noninvasive evaluation of the body TAC through saliva via simple naked-eye or smartphone-based inspection.

摘要

在科学界,氧化还原失衡和与氧化应激相关的生物标志物因其在广泛的人类疾病中的重要作用而引起越来越多的共识。在这种情况下,总抗氧化能力(TAC),即体内酶和非酶抗氧化化合物的整体模式,是一个重要的生物分析参数。然而,到目前为止,抗氧化剂检测需要昂贵的仪器、实验室设置和试剂,而且具有侵入性。然而,由于使用的反应方案和探针/底物对相关目标物种的范围不够敏感,它们通常对干扰基质的敏感性很强,并且无法检测到生理抗氧化分子的完整模式。在这里,我们利用铂纳米粒子的酶模拟特性,并结合在粒子表面生成的羟基自由基探针,开发出一种有效的检测方案,该方案对单电子转移(SET)和氢原子转移(HAT)反应均敏感,从而涵盖了所有生理相关的抗氧化物质。重要的是,纳米酶使我们能够通过简单的肉眼或基于智能手机的检查,通过唾液快速(5 分钟)、准确和非侵入性地评估体内 TAC。

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