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两种头孢菌素抗生素(头孢噻呋和头孢匹林)的碱基催化水解和形态依赖性光解。

Base-catalyzed hydrolysis and speciation-dependent photolysis of two cephalosporin antibiotics, ceftiofur and cefapirin.

机构信息

Instrumental Analytical Chemistry and Centre of Water and Environmental Research (ZWU), University of Duisburg-Essen, Universitätsstraße 5, 45141, Essen, Germany.

Instrumental Analytical Chemistry and Centre of Water and Environmental Research (ZWU), University of Duisburg-Essen, Universitätsstraße 5, 45141, Essen, Germany; IWW Water Centre, Moritzstraße 26, 45476 Mülheim an der Ruhr, Germany.

出版信息

Water Res. 2018 May 1;134:253-260. doi: 10.1016/j.watres.2017.12.048. Epub 2017 Dec 22.

Abstract

Lately, special attention has been given to veterinary cephalosporin antibiotics due to their broad activity spectrum and significant consumption. Indeed, the determination of hydrolytic and photolytic kinetics provides a better comprehension of the undesired persistence of cephalosporins in aqueous matrices. In this work, the two widely used veterinary antibiotics ceftiofur (CEF) and cefapirin (CEPA) showed high instability under alkaline conditions, degrading in few minutes at pH > 11. In buffered solutions at neutral pH and natural temperature (T = 22 ± 1 °C), both drugs presented moderate stability (t½ = 3 d, CEPA and 1.4 d, CEF). Our study also demonstrated that CEPA and CEF speciation did not significantly influence the direct photolysis rates. Using a simulated water disinfection set-up (λ = 254 nm), all ionic species of CEF and CEPA presented fast and similar pseudo-first order degradation rates, k 0.0095 ± 0.0004 and 0.0092 ± 0.001 cm mJ, respectively. Furthermore, using surface water in hydrolysis experiments, CEF demonstrated significant matrix-dependent stability with a half-life (t½ = 14.7 d) tenfold higher than in buffered solutions. In contrast, CEPA presented a very similar hydrolysis rate in river water (t½ = 4.2 d) and a subtle faster photo-degradation rate in this same matrix (k 0.0128 ± 0.001 cm mJ), highlighting the importance of disinfection radiation for cephalosporin depletion in aqueous environments.

摘要

最近,兽医头孢菌素类抗生素因其广谱活性和大量消耗而受到特别关注。事实上,水解和光解动力学的确定提供了对头孢菌素在水基质中不期望的持久性的更好理解。在这项工作中,两种广泛使用的兽医抗生素头孢噻呋(CEF)和头孢匹林(CEPA)在碱性条件下表现出高度不稳定性,在 pH>11 时几分钟内降解。在中性 pH 和自然温度(T=22±1°C)下的缓冲溶液中,两种药物均表现出中等稳定性(t½=3d,CEPA 和 1.4d,CEF)。我们的研究还表明,CEPA 和 CEF 的形态并没有显著影响直接光解速率。使用模拟水消毒装置(λ=254nm),CEF 和 CEPA 的所有离子形态均表现出快速且相似的准一级降解速率,k 0.0095±0.0004 和 0.0092±0.001 cm mJ,分别。此外,在水解实验中使用地表水,CEF 表现出显著的基质依赖性稳定性,半衰期(t½=14.7d)比在缓冲溶液中高十倍。相比之下,CEPA 在河水中表现出非常相似的水解速率(t½=4.2d),并且在相同的基质中表现出稍快的光降解速率(k 0.0128±0.001 cm mJ),突出了消毒辐射对头孢菌素在水环境中消耗的重要性。

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