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A novel generic dipstick-based technology for rapid and precise detection of tetracycline, streptogramin and macrolide antibiotics in food samples

机译:一种基于通用量油尺的新型技术,可快速,准确地检测食品样品中的四环素,链霉菌素和大环内酯类抗生素

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Excessive use of antibiotics in veterinary medicine and as growth promoters in stock farming has been associated with the dramatically increasing prevalence of multidrug-resistant human pathogenic bacteria. European community legislators have therefore restricted the veterinary use of antibiotics and banned them as growth-promoting food additives in stock breeding (1831/2003/EC). The monitoring of such legislation requires technology for precise and straightforward on-site quantification of antibiotics in farm samples and food products without the need for extensive laboratory equipment and trained personnel. Capitalizing on bacterial transcriptional regulators (TetR, PIP, E), which are dose-dependently released from their cognate operators (tetO, PIR, ETR) upon binding of specific classes of antibiotics (tetracycline, streptogramins, macrolides) we have designed an easy-to-handle dipstick-based assay for detection of antibiotic levels in serum, meat and milk whose detection limits are up to 40-fold below licensed threshold values. The generic dipstick consists of either nitrocellulose, nylon or polyvinylidenfluorid (PVDF) membrane strips coated with streptavidin and immobilized biotinylated operator DNA, which acts as capture DNA to bind hexa-histidine (His(6))-tagged bacterial biosensors. Antibiotics present in specific samples triggered the dose-dependent release of the capture DNA-biosensor interaction, which, after dipping into two different solutions, results in a correlated conversion of a chromogenic substrate by a standard His(6)-targeted enzyme complex. This can be quantified by comparison of the dipstick to a standardized color scale or by assessing the terminal solution at 450nm. As demonstrated using serum, meat and milk samples spiked with 14 different antibiotics, the dipstick technology provided sensitive detection in a rapid assay format, and could be employed to monitor non-authorized use of antibiotics and to discover novel antibiotics.
机译:兽药中抗生素的过量使用以及畜牧业中抗生素的生长促进剂已与耐多药的人类致病细菌的急剧增加相关。因此,欧洲共同体立法者限制了兽用抗生素的使用,并禁止将它们用作畜牧业中促进生长的食品添加剂(1831/2003 / EC)。对此类法规的监控需要精确,直接地现场定量农场样品和食品中抗生素的技术,而无需大量的实验室设备和训练有素的人员。利用细菌转录调节剂(TetR,PIP,E),它们通过结合特定类别的抗生素(四环素,链霉菌素,大环内酯)从其同源操纵子(tetO,PIR,ETR)剂量依赖性释放,我们设计了基于检测棒的检测方法,用于检测血清,肉类和牛奶中的抗生素水平,其检测极限比许可的阈值低40倍。通用量油尺由涂有链霉亲和素和固定化生物素化的操纵基因DNA的硝酸纤维素,尼龙或聚偏氟乙烯(PVDF)膜带组成,该DNA充当捕获DNA以结合带有六组氨酸(His(6))标签的细菌生物传感器。特定样品中存在的抗生素触发了捕获DNA-生物传感器相互作用的剂量依赖性释放,该相互作用在浸入两种不同溶液后导致标准His(6)-靶向酶复合物对发色底物的相关转化。这可以通过将量油尺与标准色标进行比较或通过评估450nm处的最终溶液来量化。正如使用掺有14种不同抗生素的血清,肉类和牛奶样品所证明的那样,量油尺技术以快速的测定形式提供了灵敏的检测,可用于监测未经授权的抗生素使用并发现新型抗生素。

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