生物膜
葡萄激酶
微生物学
金黄色葡萄球菌
纤维蛋白
吞噬作用
抗生素
抗菌剂
化学
生物
细菌
免疫学
遗传学
作者
Jakub Kwieciński,Marijke Peetermans,Laurens Liesenborghs,Manli Na,Halla Björnsdóttir,Xuefeng Zhu,Gunnar Jacobsson,Bengt R. Johansson,Joan A. Geoghegan,Timothy J. Foster,Elisabet Josefsson,Johan Bylund,Peter Verhamme,Tao Jin
标识
DOI:10.1093/infdis/jiv360
摘要
Staphylococcus aureus biofilms, a leading cause of persistent infections, are highly resistant to immune defenses and antimicrobial therapies. In the present study, we investigated the contribution of fibrin and staphylokinase (Sak) to biofilm formation. In both clinical S. aureus isolates and laboratory strains, high Sak-producing strains formed less biofilm than strains that lacked Sak, suggesting that Sak prevents biofilm formation. In addition, Sak induced detachment of mature biofilms. This effect depended on plasminogen activation by Sak. Host-derived fibrin, the main substrate cleaved by Sak-activated plasminogen, was a major component of biofilm matrix, and dissolution of this fibrin scaffold greatly increased susceptibility of biofilms to antibiotics and neutrophil phagocytosis. Sak also attenuated biofilm-associated catheter infections in mouse models. In conclusion, our results reveal a novel role for Sak-induced plasminogen activation that prevents S. aureus biofilm formation and induces detachment of existing biofilms through proteolytic cleavage of biofilm matrix components.
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