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The widespread occurrence of antibiotics as contaminants in the aquatic environment has increased attention in the last years. The concern over the release of antibiotics into the environment is related primarily to the potential for the development of antimicrobial resistance among microorganisms. This article presents an overview of analytical methodologies for the determination of quinolone (Qs) and fluoroquinolone (FQs), macrolide (MLs), tetracycline (TCs), sulfonamide (SAs) antibiotics and trimethoprim (TMP) in different environmental waters. The analysis of these antibiotics has usually been carried out by high-performance liquid chromatography (HPLC) coupled to mass spectrometry (MS) or tandem mass spectrometry (MS/MS) and to a lesser extent by ultraviolet (UV) or fluorescence detection (FD). A very important step before LC analysis is sample preparation and extraction leading to elimination of interferences and prevention of matrix effect and preconcentration of target analytes.  相似文献   
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含氟甲喹残留的鳗鲡肉糜自然基体标准样品的制备   总被引:2,自引:0,他引:2  
Yu K  Yang F  Liu Z  Huang J  Li Y  Chen Z 《色谱》2011,29(7):691-695
为了获得与实际检测样品完全一致的检测质量控制样品,研制了含氟甲喹的自然基体鳗鲡肉糜标准样品。在模拟人工养殖的自然条件下适量施用氟甲喹药物,采集符合预期水平(氟甲喹含量为5~10 μg/kg)的阳性材料。取带皮的阳性肌肉均质,过10目筛网。样品用尼龙/聚丙烯(PA/CPP)耐蒸煮复合膜袋包装,经Co60-γ射线12 kGy剂量的辐照灭菌;经均匀性检验、稳定性检验、中国合格评定国家认可委员会认可实验室液相色谱-串联质谱法检测协同定值。所建立的制备方法为含药物残留的鳗鲡肉糜的自然基体标准样品的实验室制备提供了一种选择。  相似文献   
3.
高效液相色谱法同时测定水体中的环丙沙星和氟甲喹   总被引:1,自引:0,他引:1  
李璐  刘菲  陈鸿汉  秦晓鹏 《色谱》2013,31(6):567-571
为了满足实验室测试和野外测试需要,也为其他学者研究不同抗生素之间的相互作用提供相关的资料,本研究选用环丙沙星(CIP)和氟甲喹(FLU)作为代表,建立了一种简单、稳定、易普及的高效液相色谱法用于同时快速测定水体中两种氟喹诺酮类抗生素的含量,并讨论了不同流动相及其比例和水样中几种常见阴、阳离子(Ca2+、Mg2+、Fe3+、Al3+、SO42-和HCO3-)对抗生素测定的影响。结果表明:三乙胺对改善柱效有明显效果;低浓度离子对测试影响不大,但Fe3+和Al3+可能与固定相的表面羟基或测试组分发生配合作用,造成基线不稳。实验结果对其他研究者对于流动相的选择与优化具有借鉴意义。  相似文献   
4.
A recently introduced programmable fluorescence detector was compared with a single wavelength fluorescence detector for quantification of fluoroquinolone (FQ) antibacterial agents, which have widely varying spectral characteristics. The two detectors were connected in parallel to an HPLC system to test their performance characteristics. With single wavelength detection, two FQs, flumequine and oxolinic acid could be detected at an emission wavelength of 368 nm in a single chromatogram while a third FQ, sarafloxacin, was not observed at that wavelength. Similarly, when the detector was optimized for sarafloxacin emission at 440 nm, the other two compounds were undetected. In contrast, all three FQs were quantified at their individual maxima in a single run using the programmable fluorescence detection. The applicability of an HPLC – programmable fluorescence detector, in combination with on-line microdialysis, also was evaluated using chicken liver fortified at low ppb levels with the three FQs. After on-line microdialysis sample clean up, the resultant HPLC chromatograms were free of background interference enabling the programmable detector to optimize the quantitation of the three analytes in a single run. The limit of quantification (LOQ) determined for each FQ was 1.0 ppb and the limit of detection (LOD) was 0.2 ppb, an order lower in magnitude than was obtainable with single wavelength detection.  相似文献   
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