活力测定
抗生素
化学
环丙沙星
壳聚糖
环境污染
细胞
纳米技术
微生物学
生物技术
材料科学
生物
生物化学
环境科学
环境保护
作者
Hanjiao Hu,Xingtang Liang,Shuangshuang Wang,Zhijun Xu,Jia Li,Haixu Chen,Daizhong Su,Yanzhen Yin,Zuqiang Huang,Xin Huang
标识
DOI:10.1002/mabi.202000185
摘要
Abstract The pollution of antibiotics in aquaculture environment is increasingly serious, and excessive antibiotics will kill the probiotics in aquaculture feed. How to improve the viability of probiotics in the antibiotics‐contaminated environment is of significance. In this study, a new strategy for protecting Saccharomyces cerevisiae cells in situ against antibiotics is constructed based on cell surface engineering technology by putting on wearable protective layers for cells. The protective layer is constructed around cellular surface via the self‐assembly of coacervate microdroplets that consist of carboxymethyl chitosan and carboxyl dextran. Without affecting the cell viability, the protective layer can grasp ciprofloxacin and decrease the contact of ciprofloxacin to cells and consequently improve the survival rate of cells when exposing to ciprofloxacin. This work highlights a facile strategy to establish removable artificial cell wall by biodegradable polysaccharides for improving the productivity of probiotics in antibiotic environments.
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