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基于铜离子相互作用的芯片上四环素类抗生素的纯化。

On-Chip Purification of Tetracyclines Based on Copper Ions Interaction.

机构信息

Fondazione Bruno Kessler, Center for Sensors and Devices, Via Sommarive 18, Povo, I-38123 Trento, Italy.

CNR-Consiglio Nazionale delle Ricerche, Istituto di Biofisica, Via alla Cascata 56/C, Povo, I-38123 Trento, Italy.

出版信息

Sensors (Basel). 2021 Oct 30;21(21):7236. doi: 10.3390/s21217236.

Abstract

Antibiotics are widely used to both prevent and treat bacterial diseases as well as promote animal growth. This massive use leads to the presence of residual antibiotics in food with severe consequences for human health. Limitations and regulations on the tolerated amount of antibiotics in food have been introduced and analytical methods have been developed. The bioanalytical methods usually employed to detect antibiotic residues, however, are time-consuming, expensive and laboratory-based. Novel methods with improved rapidity, portability and cost that are easy-to-use and sustainable are therefore highly desirable. In the attempt to fulfill this need, a microfluidic system was set up herein for the purification and pre-concentration of tetracyclines from raw milk selected as the case-study. The system includes a polymeric microfluidic chip containing magnetic beads loaded with copper to exploit the preferential interaction of tetracycline with divalent ions. The microfluidic system was demonstrated to efficiently pre-concentrate tetracycline, oxytetracycline and chlortetracycline with similar performances and efficiently purify tetracycline from raw milk without any pre-treatment. The simplified method described in this paper could be easily integrated in a compact and portable device for the in-field detection of tetracyclines, with the economic advantage of preventing food wastes and guaranteeing food safety.

摘要

抗生素被广泛用于预防和治疗细菌性疾病以及促进动物生长。这种大规模的使用导致食物中残留抗生素的存在,对人类健康造成严重后果。已经引入了对食物中抗生素允许量的限制和规定,并开发了分析方法。然而,用于检测抗生素残留的生物分析方法通常耗时、昂贵且基于实验室。因此,人们非常希望开发出具有改进的快速性、便携性和易于使用和可持续性的成本效益更高的新型方法。为了满足这一需求,本文建立了一种微流控系统,用于从选定的案例研究——生牛乳中纯化和预浓缩四环素。该系统包括一个聚合物微流控芯片,其中装有负载铜的磁性珠,以利用四环素与二价离子的优先相互作用。该微流控系统被证明能够有效地预浓缩四环素、土霉素和金霉素,具有相似的性能,并能够在无需任何预处理的情况下从生牛乳中有效地纯化四环素。本文中描述的简化方法可以很容易地集成到一个紧凑、便携的设备中,用于现场检测四环素,具有防止食品浪费和保证食品安全的经济优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1505/8588518/a4973fdbfbc4/sensors-21-07236-g001.jpg

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