Søeborg Tue, Ingerslev Flemming, Halling-Sørensen Bent
Section of Environmental Chemistry, Department of Analytical Chemistry, Danish University of Pharmaceutical Sciences, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
Chemosphere. 2004 Dec;57(10):1515-24. doi: 10.1016/j.chemosphere.2004.09.020.
Tetracyclines and tetracycline degradation products and epimers end up in the environment. In order to predict the persistence of the potential dominating species of the chlortetracyclines in the environment, the chemical stability of chlortetracycline (CTC) and four major CTC degradation products and epimers (iso-CTC, 4-epi-CTC, anhydro-CTC, and 4-epi-anhydro-CTC) was studied in milliQ water and soil interstitial water (SIW) under environmentally relevant conditions (oxygen, light, pH (3-9), and temperature (6 degrees C and 20 degrees C)). The chemical stability of the compounds was evaluated by following the decrease in amount of parent compound over time. In order to compare the results obtained under the varying conditions, apparent pseudo-first-order rate constants (k(obs)) for the disappearance of the parent compound and corresponding apparent half-lives were calculated. A statistical evaluation of the data showed that the chemical stability of the chlortetracyclines was generally dependent on photolysis, temperature, and matrix. The presence or absence of oxygen did not influence on the chemical stability. The presence of calcium and magnesium ions in SIW is believed to account for the significant differences in half-lives between milliQ water and SIW, although numerous of other factors are believed to influence as well. Generally, the five compounds were more persistent at pH 3-4 than at pH above 5.
四环素及其降解产物和差向异构体最终进入环境。为了预测环境中潜在占主导地位的金霉素类物种的持久性,在与环境相关的条件(氧气、光照、pH值(3 - 9)和温度(6℃和20℃))下,研究了金霉素(CTC)以及四种主要的CTC降解产物和差向异构体(异金霉素、4 - 差向金霉素、脱水金霉素和4 - 差向脱水金霉素)在超纯水和土壤间隙水(SIW)中的化学稳定性。通过跟踪母体化合物量随时间的减少来评估化合物的化学稳定性。为了比较在不同条件下获得的结果,计算了母体化合物消失的表观准一级速率常数(k(obs))和相应的表观半衰期。数据的统计评估表明,金霉素类的化学稳定性通常取决于光解、温度和基质。氧气的存在与否对化学稳定性没有影响。虽然许多其他因素也被认为有影响,但SIW中钙和镁离子的存在被认为是超纯水和SIW之间半衰期存在显著差异的原因。一般来说,这五种化合物在pH值为3 - 4时比在pH值高于5时更持久。