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在实验室规模下,通过在线湍流液相色谱-高分辨率质谱联用仪 LTQ-Orbitrap 对四环素和红霉素抗生素进行酶处理时,鉴定新的转化产物。

Identification of new transformation products during enzymatic treatment of tetracycline and erythromycin antibiotics at laboratory scale by an on-line turbulent flow liquid-chromatography coupled to a high resolution mass spectrometer LTQ-Orbitrap.

机构信息

Catalan Institute for Water Research (ICRA), H2O Building, Scientific and Technological Park of the University of Girona, Emili Grahit 101, 17003 Girona, Spain.

Catalan Institute for Water Research (ICRA), H2O Building, Scientific and Technological Park of the University of Girona, Emili Grahit 101, 17003 Girona, Spain.

出版信息

Chemosphere. 2015 Jan;119:90-98. doi: 10.1016/j.chemosphere.2014.05.072. Epub 2014 Jun 24.

DOI:10.1016/j.chemosphere.2014.05.072
PMID:24972175
Abstract

This work describes the formation of transformation products (TPs) by the enzymatic degradation at laboratory scale of two highly consumed antibiotics: tetracycline (Tc) and erythromycin (ERY). The analysis of the samples was carried out by a fast and simple method based on the novel configuration of the on-line turbulent flow system coupled to a hybrid linear ion trap - high resolution mass spectrometer. The method was optimized and validated for the complete analysis of ERY, Tc and their transformation products within 10 min without any other sample manipulation. Furthermore, the applicability of the on-line procedure was evaluated for 25 additional antibiotics, covering a wide range of chemical classes in different environmental waters with satisfactory quality parameters. Degradation rates obtained for Tc by laccase enzyme and ERY by EreB esterase enzyme without the presence of mediators were ∼78% and ∼50%, respectively. Concerning the identification of TPs, three suspected compounds for Tc and five of ERY have been proposed. In the case of Tc, the tentative molecular formulas with errors mass within 2 ppm have been based on the hypothesis of dehydroxylation, (bi)demethylation and oxidation of the rings A and C as major reactions. In contrast, the major TP detected for ERY has been identified as the "dehydration ERY-A", with the same molecular formula of its parent compound. In addition, the evaluation of the antibiotic activity of the samples along the enzymatic treatments showed a decrease around 100% in both cases.

摘要

这项工作描述了两种高消耗抗生素

四环素(Tc)和红霉素(ERY)在实验室规模下通过酶促降解形成的转化产物(TPs)。样品分析是通过一种快速而简单的方法进行的,该方法基于在线湍流流动系统与混合线性离子阱-高分辨率质谱仪的新颖配置。该方法经过优化和验证,可在 10 分钟内完成 ERY、Tc 及其转化产物的完全分析,无需进行任何其他样品处理。此外,该在线程序的适用性已在 25 种其他抗生素中进行了评估,涵盖了不同环境水中广泛的化学类别,并具有令人满意的质量参数。漆酶酶作用下 Tc 的降解率和约 50%,而 EreB 酯酶酶作用下 ERY 的降解率分别为~78%和~50%。关于 TPs 的鉴定,已经提出了三种疑似 Tc 的化合物和五种疑似 ERY 的化合物。对于 Tc,基于 A 和 C 环去羟化、(双)脱甲基和氧化等主要反应的假设,提出了误差质量在 2 ppm 以内的暂定分子式。相比之下,在 ERY 中检测到的主要转化产物被鉴定为“脱水 ERY-A”,其分子式与母体化合物相同。此外,对酶处理过程中样品抗生素活性的评估表明,在这两种情况下,抗生素活性都下降了约 100%。

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