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Optimization of analytical methods to improve detection of erythromycin from water and sediment

机译:优化分析方法以改善水和沉积物中红霉素的检测

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Analytical methods to improve the detection of erythromycin in water and sediment were developed to optimize for erythromycin's recovery of extractable and bound residues from the aquatic environment. The objective of this study was to determine optimal recovery of erythromycin from water and sediment to improve its detection in environmental samples through solid-phase extraction (SPE) and sediment-extraction methods. SPE methods examined included previously reported methods for macrolide and sulfonamide antibiotics with erythromycin recoveries ranging from 75.5 % to 94.7 %. Extraction of erythromycin was performed from sand employing various solvents and buffers to determine the best method for extraction from two sandy loam pond sediments. Various extraction times were also examined, and all extraction procedures were performed in duplicate. The greatest recovery of ~(14)C-erythromycin in the Iowa sediment was 84 % using 0.3 M ammonium acetate at pH 4.2: acetonitrile (15:85, v/v) solution. The Oklahoma sediment yielded the greatest recovery of ~(14)C-erythromycin at 86.7 % with 0.3 M ammonium acetate at pH 7: acetonitrile (30:70, v/v) with a 60-minute shake time. The present results demonstrate improved extraction methods for enhancing the accuracy of erythromycin detection from environmental samples.
机译:开发了改善水和沉积物中红霉素检测的分析方法,以优化红霉素从水生环境中回收可提取和结合的残留物的方法。这项研究的目的是确定从水中和沉积物中回收红霉素的最佳方法,以改善通过固相萃取(SPE)和沉淀物提取方法在环境样品中对红霉素的检测。检验的SPE方法包括先前报道的大环内酯和磺酰胺类抗生素的方法,其中红霉素的回收率在75.5%至94.7%之间。用各种溶剂和缓冲液从沙子中提取红霉素,以确定从两种沙质壤土池塘沉积物中提取的最佳方法。还检查了各种提取时间,所有提取程序均一式两份进行。在pH 4.2:乙腈(15:85,v / v)溶液中使用0.3 M乙酸铵,在爱荷华州沉积物中〜(14)C-红霉素的最大回收率为84%。俄克拉荷马州的沉淀物以0.37%的乙酸铵(pH 7:乙腈(30:70,v / v)和60分钟的摇动时间)在86.7%的条件下可回收最大的〜(14)C-红霉素。本结果证明了改进的提取方法,可增强从环境样品中检测红霉素的准确性。

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