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采用氧化石墨烯功能化整体式纳米柱的 ProFlow 纳流液相色谱法,同时测定食品中氯霉素和氯霉素葡萄糖醛酸的含量。

ProFlow nano-liquid chromatography with a graphene oxide-functionalized monolithic nano-column for the simultaneous determination of chloramphenicol and chloramphenicol glucuronide in foods.

机构信息

Food Analysis and Research Laboratory, Bingöl University, Bingöl, Turkey.

Department of Food Processing, Vocational School of Food, Agriculture and Livestock, Bingöl University, Bingöl, Turkey.

出版信息

J Food Sci. 2022 Apr;87(4):1721-1730. doi: 10.1111/1750-3841.16121. Epub 2022 Mar 22.

Abstract

Chloramphenicol (CAP) is an effective antibiotic with broad spectrum against gram-positive and gram-negative bacteria, while it is used to treat various infections in animals. Although CAP is banned for usage in the livestock products including, milk, honey, seafood, and royal jelly, CAP is still often detected in foods of animal origin, posing a threat to consumer health. The use of CAP is restricted in many countries due to its side effect in human metabolic process according to the Expert Committee on Food Additives (ECFA) recommendation. Chloramphenicol glucuronide (CAPG) is also a metabolic product of CAP, which may be a hazardous chemical for human health. Therefore, the development of sensitive separation and quantification method is an important issue, especially for food safety. Herein, we reported the preparation and application of a monolithic nano-column for CAP and CAPG analyses in foods by ProFlow Nano liquid chromatography (ProFlow Nano LC). The monolithic nano-column was prepared by an in situ polymerization using 3-chloro-2-hydroxypropylmethacrylate (HPMA-Cl) and ethylene dimethacrylate (EDMA) and followed graphene oxide (GO) modification. After characterization, the monolithic nano-column was used for the analysis of CAP and CAPG in honey and milk samples by ProFlow Nano LC. The whole method was validated in terms of linearity, sensitivity, precision, recovery, and repeatability, while it led to obtain high sensitivity with limit of quantification was found as 0.02 µg/kg for CAP. Limit of quantification for CAPG was found as 0.08 µg/kg. The developed method with monolithic nano-column was optimized to achieve very sensitive analyses of CAP and CAPG in the food samples. The applicability of the nano-column was successfully demonstrated by the analysis of CAP and CAPG in milk and honey samples. PRACTICAL APPLICATION: This article describes the preparation and application of a monolithic nano-column for the separation and determination of chloramphenicol and chloramphenicol glucuronide in food samples by ProFlow Nano LC. The use of new and advanced techniques is a crucial issue in the food science and technology. In this sense, this study demonstrated a new food analysis method using advanced instrumental technique with a homemade monolithic nano-column.

摘要

氯霉素(CAP)是一种有效的抗生素,对革兰氏阳性和革兰氏阴性菌具有广谱作用,用于治疗动物的各种感染。尽管 CAP 在包括牛奶、蜂蜜、海鲜和蜂王浆在内的畜产品中被禁用,但 CAP 仍经常在动物源性食品中被检测到,对消费者健康构成威胁。根据食品添加剂专家委员会(ECFA)的建议,由于 CAP 在人类代谢过程中的副作用,许多国家都限制了 CAP 的使用。氯霉素葡萄糖醛酸(CAPG)也是 CAP 的代谢产物,可能对人类健康构成危险化学物质。因此,开发灵敏的分离和定量方法是一个重要问题,特别是对于食品安全。在此,我们通过 ProFlow Nano 液相色谱(ProFlow Nano LC)报告了一种用于食品中 CAP 和 CAPG 分析的整体纳米柱的制备和应用。整体纳米柱通过使用 3-氯-2-羟丙基甲基丙烯酸酯(HPMA-Cl)和乙二醇二甲基丙烯酸酯(EDMA)原位聚合并随后进行氧化石墨烯(GO)修饰来制备。经过表征后,通过 ProFlow Nano LC 用整体纳米柱分析蜂蜜和牛奶样品中的 CAP 和 CAPG。该方法从线性、灵敏度、精密度、回收率和重复性方面进行了验证,对于 CAP 的定量限为 0.02 µg/kg,对于 CAPG 的定量限为 0.08 µg/kg。通过优化整体纳米柱,实现了食品样品中 CAP 和 CAPG 的高灵敏度分析。通过对牛奶和蜂蜜样品中 CAP 和 CAPG 的分析,成功验证了纳米柱的适用性。 实际应用:本文描述了通过 ProFlow Nano LC 分离和测定食品样品中氯霉素和氯霉素葡萄糖醛酸的整体纳米柱的制备和应用。使用新的和先进的技术是食品科学和技术中的一个关键问题。在这种情况下,本研究使用先进的仪器技术和自制的整体纳米柱展示了一种新的食品分析方法。

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