卟啉金属有机框架PCN-224支持普鲁士蓝,可选择性检测酪蛋白和植酸

IF 5.6 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Zhiqiang Zhou, Xiao Zhang, Wenting Chen, Zhaowei Liang, Zihan Zhang, Liyun Yang
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引用次数: 0

摘要

监测酪蛋白和植酸含量对食品安全和人体健康具有重要意义。本文通过在PCN-224层上原位生长PB,构建了卟啉金属-有机骨架PCN-224负载普鲁士蓝(PCN-224@PB)纳米探针。负载的PCN-224不仅缩小了PB的大小,提高了PB的分散性,而且对酪蛋白和植酸具有特异性亲和力。基于Zr-OP结构的形成,PCN-224@PB遇到酪蛋白时过氧化物酶(POD)样活性被抑制。在植酸存在下,沉淀的PB被分解,从而恢复PCN-224被PB猝灭的荧光。所构建的纳米探针对酪蛋白和植酸的检测限分别为0.25 μg/mL和0.18 μM,具有较高的灵敏度。此外,PCN-224@PB在牛奶、饮料、玉米和细胞样品中表现出优异的传感性能,酪蛋白和植酸的回收率在94.30% ~ 103.20%之间,进一步证明了其在实际样品分析中的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Porphyrinic metal-organic framework PCN-224 supported Prussian blue enables selective detection of casein and phytic acid

Porphyrinic metal-organic framework PCN-224 supported Prussian blue enables selective detection of casein and phytic acid
Monitoring casein and phytic acid content is of great significance for food safety and human health. In this paper, porphyrinic metal-organic framework PCN-224 supported Prussian blue (PCN-224@PB) nanoprobe was constructed by in-situ growth of PB on PCN-224 layer. The supported PCN-224 not only reduces the size and improves the dispersity of PB, but also provides specific affinity for casein and phytic acid. Based on the formation of Zr-OP structure, the peroxidase (POD)-like activity of PCN-224@PB is inhibited when encountering casein. In the presence of phytic acid, the deposited PB is decomposed, thus recovering the fluorescence of PCN-224 quenched by PB. The constructed nanoprobe exhibits high sensitivity with a limit of detection of 0.25 μg/mL for casein and 0.18 μM for phytic acid detection, respectively. In addition, PCN-224@PB shows excellent sensing performance in milk, beverage, corn and cells samples, with casein and phytic acid recoveries ranging from 94.30 % to 103.20 %, further demonstrating its feasibility in real sample analysis.
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来源期刊
Talanta
Talanta 化学-分析化学
CiteScore
12.30
自引率
4.90%
发文量
861
审稿时长
29 days
期刊介绍: Talanta provides a forum for the publication of original research papers, short communications, and critical reviews in all branches of pure and applied analytical chemistry. Papers are evaluated based on established guidelines, including the fundamental nature of the study, scientific novelty, substantial improvement or advantage over existing technology or methods, and demonstrated analytical applicability. Original research papers on fundamental studies, and on novel sensor and instrumentation developments, are encouraged. Novel or improved applications in areas such as clinical and biological chemistry, environmental analysis, geochemistry, materials science and engineering, and analytical platforms for omics development are welcome. Analytical performance of methods should be determined, including interference and matrix effects, and methods should be validated by comparison with a standard method, or analysis of a certified reference material. Simple spiking recoveries may not be sufficient. The developed method should especially comprise information on selectivity, sensitivity, detection limits, accuracy, and reliability. However, applying official validation or robustness studies to a routine method or technique does not necessarily constitute novelty. Proper statistical treatment of the data should be provided. Relevant literature should be cited, including related publications by the authors, and authors should discuss how their proposed methodology compares with previously reported methods.
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