海藻酸铜漆酶纳米酶快速比色法检测红酒中的亚硫酸盐。

IF 4.6 Q1 CHEMISTRY, ANALYTICAL
ACS Measurement Science Au Pub Date : 2025-01-29 eCollection Date: 2025-02-19 DOI:10.1021/acsmeasuresciau.4c00085
Kaayyoof Fikadu Gutema, Menbere Leul Mekonnen, Bitania Teklu Yilma, Tesfaye Eshete Asrat, Jan Dellith, Marco Diegel, Andrea Csáki, Wolfgang Fritzsche
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引用次数: 0

摘要

与传统的分析方法相比,基于纳米酶的比色传感器为食品安全监测提供了更简单、更容易获得的解决方案。本文报道了一种强大的模拟漆酶纳米酶,用于比色法检测红葡萄酒中的亚硫酸盐,亚硫酸盐是酿酒中常见的防腐剂。AlgCu代表了一种合理的纳米酶设计,其中使用多功能基团海藻酸盐作为Cu催化中心的配位环境,模仿天然漆酶中的氨基酸微环境。用2,4-二氯苯酚作为模型底物评价了AlgCu的漆酶活性,其氧化产物与4-氨基安替比林反应,形成一种红粉红色的化合物,在510 nm处有吸收峰。结果表明,与原始铜NPs相比,AlgCu的漆酶活性提高了32.81%,表明配位环境在提高漆酶活性方面的作用。亚硫酸盐的加入降低了催化显色产物的强度,证实亚硫酸盐抑制了AlgCu的漆酶模拟活性。在2 ~ 100 μM范围内,抑制率与亚硝酸盐浓度呈线性相关(r2 = 0.996),可以检测到0.78 μM以下的亚硝酸盐。此外,通过将比色法与智能手机的颜色读数相结合,可以检测到低至4.9 μM的亚硫酸盐浓度。分析亚硫酸盐添加的红酒样品,回收率在96%到106%之间。总的来说,所获得的分析数据表明,AlgCu是一种强大的基于纳米酶的比色化学传感器,适用于葡萄酒质量控制和食品安全监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid Colorimetric Detection of Sulfite in Red Wine Using Alginate-Copper Laccase Nanozyme with Smartphone as an Optical Readout.

Compared with the conventional analytical methods, nanozyme-based colorimetric sensors offer simpler and more accessible solutions for point-of-need food safety monitoring. Herein, Alginate-Cu (AlgCu) is reported as a robust laccase mimetic nanozyme for the colorimetric detection of sulfite in red wine, a common preservative in winemaking. AlgCu represents a rational design of nanozymes where the multifunctional group alginate is used as a coordination environment for the Cu catalytic center, mimicking the amino acids microenvironment in the natural laccase. The laccase activity of the AlgCu is evaluated using 2,4-dichlorophenol as a model substrate, where its oxidized product reacts with 4-aminoantipyrine, forming a reddish-pink compound with an absorption peak at 510 nm. The result showed that the AlgCu exhibited 32.81% higher laccase activity than pristine copper NPs, highlighting the role of a coordination environment in improving catalytic activity. The addition of sulfite decreased the intensity of the catalytic chromogenic product, confirming that sulfite inhibited the laccase mimetic activity of AlgCu. The observed inhibition is linearly related to the sulfite concentration from 2 to 100 μM (R 2 = 0.996), enabling the detection of sulfite down to 0.78 μM. Furthermore, a sulfite concentration down to 4.9 μM could be detected by integrating the colorimetric assay with smartphone color readouts. Analysis of sulfite-spiked red wine samples gave recoveries between 96 and 106%. Overall, the obtained analytical figures of merits signify AlgCu as a robust nanozyme-based colorimetric chemosensor suitable for a point-of-need application in wine quality control and food safety monitoring in general.

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来源期刊
ACS Measurement Science Au
ACS Measurement Science Au 化学计量学-
CiteScore
5.20
自引率
0.00%
发文量
0
期刊介绍: ACS Measurement Science Au is an open access journal that publishes experimental computational or theoretical research in all areas of chemical measurement science. Short letters comprehensive articles reviews and perspectives are welcome on topics that report on any phase of analytical operations including sampling measurement and data analysis. This includes:Chemical Reactions and SelectivityChemometrics and Data ProcessingElectrochemistryElemental and Molecular CharacterizationImagingInstrumentationMass SpectrometryMicroscale and Nanoscale systemsOmics (Genomics Proteomics Metabonomics Metabolomics and Bioinformatics)Sensors and Sensing (Biosensors Chemical Sensors Gas Sensors Intracellular Sensors Single-Molecule Sensors Cell Chips Arrays Microfluidic Devices)SeparationsSpectroscopySurface analysisPapers dealing with established methods need to offer a significantly improved original application of the method.
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