a State Key Laboratory of Organic Geochemistry , Guangzhou Institute of Geochemistry, Chinese Academy of Sciences , Guangzhou , P. R. China.
b University of Chinese Academy of Sciences , Beijing , P. R. China.
Crit Rev Anal Chem. 2017 May 4;47(3):223-250. doi: 10.1080/10408347.2016.1266924. Epub 2016 Dec 1.
Used heavily in food animal production, quinolones occur widely in food products of animal origin. Development of highly sensitive and selective analytical techniques for the detection of quinolone residues, often at trace levels, in food samples is necessary to ensure food safety and understand their public health risk. With complex matrices, food samples typically require a series of pre-treatment steps, such as powdering, homogenization, deproteinization, and filtration. This review summarizes the recent advances in extraction, concentration, and detection techniques for quinolones in food product samples, and briefly compares the advantages and limitations of major techniques. Recent development of quick, easy, cheap, effective, rugged, and safe (QuEChERS) extraction method and immunoassay- and biosensor-based detection methods for the determination of quinolones residues in food products is discussed in details. A perspective on the trends and needs of future research is also presented.
喹诺酮类药物在食品动物生产中大量使用,广泛存在于动物源性食品产品中。为了确保食品安全和了解其公共健康风险,有必要开发高度敏感和选择性的分析技术,以检测食品样品中的痕量喹诺酮类残留。对于复杂基质的食品样品,通常需要进行一系列预处理步骤,如粉碎、均化、除蛋白和过滤。本综述总结了食品样品中喹诺酮类药物提取、浓缩和检测技术的最新进展,并简要比较了主要技术的优缺点。详细讨论了快速、简便、廉价、有效、耐用和安全(QuEChERS)提取方法以及基于免疫测定和生物传感器的检测方法在食品中喹诺酮类残留检测方面的最新发展。还对未来研究的趋势和需求进行了展望。