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研究绿藻去除抗生素头孢他啶的机制及后续微生物影响评估。

Investigation of the removal mechanism of antibiotic ceftazidime by green algae and subsequent microbic impact assessment.

机构信息

College of Engineering, China Pharmaceutical University, 210009, Nanjing, China.

Jiangsu Key Laboratory of Environmental Engineering, Jiangsu Academic of Environmental Science, 210036, Nanjing, China.

出版信息

Sci Rep. 2017 Jun 23;7(1):4168. doi: 10.1038/s41598-017-04128-3.

Abstract

The present study provides an integrated view of algal removal of the antibiotic ceftazidime and its basic parent structure 7-aminocephalosporanic acid (7-ACA), including contribution analysis, bacteriostatic and aquatic toxic assessment and metabolite verification. 92.70% and 96.07% of the two target compounds was removed after the algal treatment, respectively. The algal removal can be separated into three steps: a rapid adsorption, a slow cell wall-transmission and the final biodegradation. Additionally, while ceftazidime demonstrated an excellent inhibitory effect on Escherichia coli, there was no bacteriostasis introduced after the algal treatment, which could avoid favoring the harmful selective pressure. On the other hand, no significant aquatic impact of the two target compounds on rotifers was observed and it was not enhanced after the algal treatment. To better reveal the mechanism involved, metabolite analyses were performed. Δ-3 ceftazidime and trans-ceftazidime were regarded as the metabolites of ceftazidime and the metabolite of 7-ACA was regarded as a compound which shared the similar structure with 4-chlorocinnamic acid. Our study indicated that the green algae performed a satisfactory growth capacity and played a dominant role for the biodegradation of the target antibiotics, which achieved high removal efficiency and low environmental impact.

摘要

本研究提供了一个综合的观点,藻类去除抗生素头孢他啶及其基本母体结构 7-氨基头孢烷酸(7-ACA),包括贡献分析、抑菌和水生毒性评估和代谢物验证。藻类处理后,两种目标化合物的去除率分别达到 92.70%和 96.07%。藻类去除可以分为三个步骤:快速吸附、缓慢的细胞壁传输和最终的生物降解。此外,头孢他啶对大肠杆菌表现出优异的抑制作用,但藻类处理后没有引入抑菌作用,可以避免有害的选择性压力。另一方面,两种目标化合物对轮虫的水生毒性没有显著影响,藻类处理后也没有增强。为了更好地揭示所涉及的机制,进行了代谢物分析。Δ-3 头孢他啶和反式头孢他啶被认为是头孢他啶的代谢物,7-ACA 的代谢物被认为是与 4-氯肉桂酸具有相似结构的化合物。我们的研究表明,绿藻表现出良好的生长能力,并对目标抗生素的生物降解起主导作用,实现了高效去除和低环境影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a13b/5482816/c0673ed38923/41598_2017_4128_Fig1_HTML.jpg

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