肠炎沙门氏菌
乳酸乳球菌
微生物学
重组DNA
生物
沙门氏菌
细菌
生物化学
乳酸
遗传学
基因
作者
Jing Wang,Kui Gu,Qiang Xu,Renqiao Wen,Jinpeng Li,Changyu Zhou,Yu Zhao,Mai Shi,Yuan Weng,Boyan Guo,Changwei Lei,Yong Sun,Hongning Wang
标识
DOI:10.1186/s12951-024-02904-8
摘要
Salmonella Enteritidis is a major foodborne pathogen throughout the world and the increase in antibiotic resistance of Salmonella poses a significant threat to public safety. Natural nanobodies exhibit high affinity, thermal stability, ease of production, and notably higher diversity, making them widely applicable for the treatment of viral and bacterial infections. Recombinant expression using Lactococcus lactis leverages both acid resistance and mucosal colonization properties of these bacteria, allowing the effective expression of exogenous proteins for therapeutic effects. In this study, nine specific nanobodies against the flagellar protein FliC were identified and expressed. In vitro experiments demonstrated that FliC-Nb-76 effectively inhibited the motility of S. Enteritidis and inhibited its adhesion to and invasion of HIEC-6, RAW264.7, and chicken intestinal epithelial cells. Additionally, a recombinant L. lactis strain secreting the nanobody, L. lactis-Nb76, was obtained. Animal experiments confirmed that it could significantly reduce the mortality rates of chickens infected with S. Enteritidis, together with alleviating the inflammatory response caused by the pathogen. These results provide a novel strategy for the treatment of antibiotic-resistant S. Enteritidis infection in the intestinal tract.
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