控制四环素诱导的粘土矿物质耐药性的界面过程
Meiyao Hu1, Zishu Liu2, Qiting Xie1
1State Key Laboratory of Soil Pollution Control and Safety, Hangzhou 310058, China; College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, Zhejiang University, Hangzhou 310058, China.
Journal of hazardous materials
|June 25, 2025
概括
粘土矿物质显著影响抗生素耐药性. 考利尼特增强了细菌对四环素的耐药性,而蒙特莫里隆石显示了双重效应,影响了抗生素的生物可用性和细菌的应激反应.
科学领域:
- 环境科学 环境科学
- 微生物学 微生物学
- 地质化学 地质化学
背景情况:
- 土壤矿物是抗生素和微生物相互作用的关键接口.
- 了解矿物媒介抗生素耐药性是缓解策略的关键.
研究的目的:
- 研究蒙莫里隆石和考林石在四环素诱导的抗生素耐药性的作用.
- 阐明影响抗生素生物可用性和耐药性的矿物-细菌相互作用机制.
主要方法:
- 使用两种粘土矿物质 (蒙莫里隆石,高林石) 和四环素 (TET) 的实验研究.
- 量化细菌耐药性的折叠变化和TET生物可用性.
- 分析了细胞内TET残留物和矿物质诱导的细菌应激反应.
主要成果:
- 考利尼特显著增强了细菌耐药性 (15.63-56.06倍) 和TET生物可用性 (7.82%-27.84%).
- 蒙莫里隆石表现出双重效应:在低TET (0.1-1.0 mg/L) 时耐药性增加,在高TET (>1.0 mg/L) 时耐药性降低.
- 蒙莫里隆石通过吸附降低了TET的生物可用性,并通过释放离子诱导了透应激,降低了细胞内TET.
结论:
- 粘土矿物界面关键调节抗生素耐药性的发展.
- 矿物质对生物可用性和细菌应激反应的特定影响影响抗生素耐药性的演变.
- 这些发现为预测和控制土壤抗生素耐药性的理论支持.
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