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用于食品中L-乳酸免酶筛选并伴随pH识别的微型双通道电化学3D打印传感平台。

Miniature dual-channel electrochemical 3D-printed sensing platform for enzyme-free screening of L-lactic acid in foodstuffs accompanying pH recognition.

作者信息

Wu Di, Wei Qiaohua, Yu Zhichao, Gao Yuan, Knopp Dietmar, Tang Dianping

机构信息

Key Laboratory of Analytical Science for Food Safety and Biology (MOE & Fujian Province), Department of Chemistry, Fuzhou University, Fuzhou 350108, China.

Key Laboratory of Analytical Science for Food Safety and Biology (MOE & Fujian Province), Department of Chemistry, Fuzhou University, Fuzhou 350108, China.

出版信息

Food Chem. 2025 Feb 15;465(Pt 2):142188. doi: 10.1016/j.foodchem.2024.142188. Epub 2024 Nov 21.

DOI:10.1016/j.foodchem.2024.142188
PMID:39586200
Abstract

Accurate and rapid identification of expired and spoiled food is crucial for food conservation, reducing resource wastage, and preventing food poisoning. This paper presents a portable electrochemical sensing platform supported by a miniature electrochemical workstation and an intelligent pH recognition system, enabling detection of L-lactic acid (L-LA) in food products without enzyme involvement. The system was based on a CuO@CuO multifaceted extended spatial hexapod structure. The synthesized CuO@CuO was characterized by a well-defined multifaceted structure. Significant enzyme-free catalysis was exhibited, and pH responses dominated by anthocyanins were identified through an intelligent image acquisition system. Additionally, we developed an electrochemical detection device for pH assistance during target testing, addressing the limitations of current electrochemical sensors' complex signal acquisition components using 3D-printed fabrication techniques and smartphones. The proposed multifunctional electrochemical workbench based on CuO@CuO was found to offer a preferable linear detection range of 0.1-1000 μM for L-LA, with a low detection limit of 0.027 μM. The visualization of pH determination was introduced as a novel approach for developing advanced electrochemical workbenches. In conclusion, pH-assisted portable electrochemical detection systems hold great potential for immediate food safety identification, particularly in resource-limited areas, facilitating prompt diagnosis and ensuring food safety.

摘要

准确快速地识别过期和变质食品对于食品保存、减少资源浪费以及预防食物中毒至关重要。本文介绍了一种由微型电化学工作站和智能pH识别系统支持的便携式电化学传感平台,能够在无需酶参与的情况下检测食品中的L-乳酸(L-LA)。该系统基于CuO@CuO多面扩展空间六足结构。合成的CuO@CuO具有明确的多面结构特征。其表现出显著的无酶催化作用,并通过智能图像采集系统识别出由花青素主导的pH响应。此外,我们开发了一种用于目标检测过程中pH辅助的电化学检测装置,利用3D打印制造技术和智能手机解决了当前电化学传感器复杂信号采集组件的局限性。基于CuO@CuO提出的多功能电化学工作台对L-LA的线性检测范围为0.1 - 1000 μM,检测限低至0.027 μM。引入pH测定的可视化作为开发先进电化学工作台的新方法。总之,pH辅助的便携式电化学检测系统在即时食品安全识别方面具有巨大潜力,特别是在资源有限的地区,有助于快速诊断并确保食品安全。

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