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头孢他啶和光产物对轮虫摄食行为的综合评估:从暴露到暴露后。

An integrated assessment of ceftazidime and photoproducts on the feeding behavior of rotifers: From exposure to post-exposure.

机构信息

School of Engineering, China Pharmaceutical University, Nanjing 211198, China.

School of Engineering, China Pharmaceutical University, Nanjing 211198, China.

出版信息

Ecotoxicol Environ Saf. 2017 Oct;144:245-251. doi: 10.1016/j.ecoenv.2017.06.039. Epub 2017 Jun 17.

Abstract

Compared to traditional toxicological studies, which depict the dose-effect of contaminants themselves on organisms at the given time, the exposure and post-exposure impacts of antibiotic ceftazidime and its photoproducts are carried out to systematically evaluate the environmental risk fate of ceftazidime in aquatic environments. For the exposure process, the promotion effect of ceftazidime on the feeding behavior of the rotifers decreased when the target compound was irradiated by sunlight, and the promotion effect was converted into inhibition effect, which indicated that the highest toxicity of ceftazidime on the feeding behavior of the rotifers was found after UV-B irradiation. The overcompensation occurred in the post-exposure, indicating a short - term effect of the corresponding photoproducts on the rotifer. In order to better understand the mechanism of this change, the photodegradation pathways of the target compound was analyzed and compared. The degradation degree under the UV-B irradiation had intensified greatly than that under the nature light irradiation. The reactive oxygen species (ROS) of the rotifer in exposure and post-exposure was also detected. Ceftazidime and photoproducts induced generation of ROS, indicating that oxidative damage occurred, and the decreasing of ROS levels could be viewed as the recovery of the rotifers in the post-exposure.

摘要

与传统的毒理学研究相比,传统的毒理学研究描述了在给定时间内污染物本身对生物体的剂量-效应,而头孢他啶及其光产物的暴露和暴露后影响则用于系统评估头孢他啶在水生环境中的环境风险命运。对于暴露过程,当目标化合物被阳光照射时,头孢他啶会促进轮虫的摄食行为,而这种促进作用会转化为抑制作用,这表明头孢他啶对轮虫摄食行为的最高毒性出现在 UV-B 照射之后。在暴露后发生了过度补偿,这表明相应的光产物对轮虫具有短期影响。为了更好地理解这种变化的机制,分析并比较了目标化合物的光降解途径。在 UV-B 照射下的降解程度比在自然光照射下的降解程度大大增强。还检测了暴露和暴露后轮虫中的活性氧物质 (ROS)。头孢他啶和光产物诱导 ROS 的产生,表明发生了氧化损伤,而 ROS 水平的降低可以被视为暴露后轮虫的恢复。

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