Structure, mechanism, and toxicity in antibiotics metal complexation: Recent advances and perspectives
文献类型: 外文期刊
第一作者: Wang, Qinghua
作者: Wang, Qinghua;He, Xi;Xiong, Haifeng;Chen, Yucheng;Huang, Lei
作者机构:
关键词: Antibiotic-metal complexes; Affecting factors; Microorganisms; Resistance gene; Toxicity
期刊名称:SCIENCE OF THE TOTAL ENVIRONMENT ( 影响因子:8.2; 五年影响因子:8.6 )
ISSN: 0048-9697
年卷期: 2022 年 848 卷
页码:
收录情况: SCI
摘要: Antibiotic-metal complexes (AMCs) formed by antibiotics and metal ions have attracted considerable attentions in recent years. Although different removal methods for AMCs have been reported in the literature, very few investigations have focused on the mechanisms and toxic effects of antibiotic-metal coordination. This review briefly describes the structural characteristics of various commonly used antibiotics and the coordination mechanisms with metal ions. Considering the complexity of the real environment, various environmental factors affecting AMC formation are highlighted. The effects of AMCs on microbial community structure and the role of metal ions in influencing resistant genes from the molecular perspective are of interest within this work. The toxicities and mechanisms of AMCs on different species of biota are also discussed. These findings underline the need for more targeted detection and analysis methods and more suitable toxicity markers to verify the combination of antibiotics with metal ions and reveal environmental toxicities in future. This review presents an innovative idea that antibiotics combined with metal ions will change the toxicity and environmental behavior of antibiotics.
分类号:
- 相关文献
作者其他论文 更多>>
-
Biological mechanisms affecting the release of greenhouse gases from microbial fuel cell-constructed wetland by simultaneously altering structure and electron shuttles
作者:Wang, Qinghua;Liang, Yayi;Tang, Jiankang;Pu, Zhenbin;Chen, Yucheng;Huang, Lei;Wang, Qinghua;Liang, Yayi;Tang, Jiankang;Pu, Zhenbin;Chen, Yucheng;Huang, Lei;Huang, Lei
关键词:Single/double chamber microbial fuel cell; Constructed wetland; Greenhouse gas; Microbial community; Functional gene
-
Mechanisms of microbial fuel cells alleviating bio-clogging in constructed wetlands
作者:Jiang, Chunli;Zhong, Hui;Jin, Yinie;Xiong, Haifeng;Wang, Qinghua;Xiao, Jun;Huang, Lei;Jiang, Chunli;Zhong, Hui;Jin, Yinie;Xiong, Haifeng;Wang, Qinghua;Xiao, Jun;Huang, Lei;Huang, Lei;Xu, Yufeng
关键词:Microbial fuel cells; Constructed wetlands; Biological blockage; Microbial; Extracellular polymeric substances
-
The role of uterus mitochondrial function in high-fat diet-related adverse pregnancy outcomes and protection by resveratrol
作者:Yang, Xizi;Hu, Ruizhi;Yao, Liping;Zhang, Wentao;Shi, Mingkun;Gong, Jiatai;Li, Yanli;Yan, Jiahao;Wang, Ying;Zhang, Qianjin;Fan, Zhiyong;He, Xi;He, Jianhua;Wu, Shusong;Yuan, Xupeng;He, Ziyu;Hou, De-Xing;Zhang, Hongfu;Chen, Liang
关键词:
-
Genome-scale cis-acting catabolite-responsive element editing confers Bacillus pumilus LG3145 plant-beneficial functions
作者:Bi, Meiying;Li, Mingkun;Wei, Jiaxun;Meng, Ziwen;Wang, Zhaoyang;Ying, Ming;Yang, Xiurong;Huang, Lei;Yang, Xiurong
关键词:
-
Laser-Chemical Surface Treatment for Enhanced Anti-Corrosion and Antibacterial Properties of Magnesium Alloy
作者:Xiong, Wei;Fu, Jiajun;Liu, Chao;Zhang, Tairui;Wang, Qinghua;Fu, Jiajun;Liu, Chao;Wang, Qinghua;Li, Li;Wang, Huixin;Li, Li;Wang, Huixin;Zhang, Mingjun;Ge, Zhiqiang
关键词:magnesium alloy; laser surface structuring; stearic acid treatment; superhydrophobicity; corrosion resistance; antibacterial
-
Laser-based fabrication of superwetting titanium alloy with enhanced corrosion and erosion-corrosion resistance
作者:Liu, Chao;Wang, Qinghua;Tong, Shaokai;Yue, Yanfang;Wang, Huixin;Wang, Huixin;Song, Jinpeng;Li, Yibo;Wang, Zhiguo
关键词:Titanium alloy; Laser texturing; Superhydrophobic; Corrosion resistance; Erosion -corrosion interaction
-
Evaluation of structure-chemistry coupling effects for superwetting silicon carbide by laser-based functionalization
作者:Li, Yongzhe;Fu, Jiajun;Liu, Chao;Wang, Qinghua;Wang, Huixin;Wang, Huixin
关键词:Laser processing; Ceramics; Microstructure; Surface chemistry; Superwetting