Biofilm enhances the interactive effects of microplastics and oxytetracycline on zebrafish intestine

微塑料 生物膜 土霉素 微生物学 生物 斑马鱼 肠上皮 环境化学 化学 细菌 抗生素 上皮 生物化学 基因 遗传学
作者
Ziyue Yu,Donghua Qiu,Tong Zhou,Liqing Zeng,Changzhou Yan
出处
期刊:Aquatic Toxicology [Elsevier]
卷期号:270: 106905-106905 被引量:3
标识
DOI:10.1016/j.aquatox.2024.106905
摘要

The enhanced adsorption of pollutants on biofilm-developed microplastics has been proved in many studies, but the ecotoxicological effects of biofilm-developed microplastics on organisms are still unclear. In this study, adult zebrafish were exposed to original microplastics, biofilm-developed microplastics, original microplastics absorbed with oxytetracycline (OTC), and biofilm-developed microplastics absorbed with OTC for 30 days. The intestinal histological damage, intestinal biomarker response, gut microbiome and antibiotic resistance genes (ARGs) profile of zebrafish were measured to explore the roles of biofilm in the effects of microplastics. The results showed that biofilm-developed microplastics significantly increased the number of goblet cells in intestinal epithelium compared with the control group. The biofilm-developed microplastics also induced the oxidative response in the zebrafish intestines, and biofilm changed the response mode in the combined treatment with OTC. Additionally, the biofilm-developed microplastics caused intestinal microbiome dysbiosis, and induced the abundance of some pathogenic genera increasing by several times compared with the control group and the original microplastics treatments, regardless of OTC adsorption. Furthermore, the abundance of ARGs in biofilm-developed microplastics increased significantly compared with the control and the original microplastic treatments. This study emphasized the significant influence and unique role of biofilm in microplastic studies.
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