溶血素
肺炎链球菌
微生物学
体内
生物
肺炎球菌感染
异鼠李素
溶细胞素
免疫学
毒力
类黄酮
抗生素
基因
生物技术
生物化学
山奈酚
抗氧化剂
作者
Yinuo Zou,Haiting Wang,Juan Fang,Hongxiang Sun,Xuming Deng,Jianfeng Wang,Y Deng,Gefu Chi
标识
DOI:10.1016/j.micpath.2023.106382
摘要
The increasing incidence of Streptococcus pneumoniae (S. pneumoniae) infection severely threatened the global public heath, causing a significant fatality in immunocompromised hosts. Notably, pneumolysin (PLY) as a pore-forming cytolysin plays a crucial role in the pathogenesis of pneumococcal pneumonia and lung injury. In this study, a natural flavonoid isorhamnetin was identified as a PLY inhibition to suppress PLY-induced hemolysis by engaging the predicted residues and attenuate cytolysin PLY-mediated A549 cells injury. Underlying mechanisms revealed that PLY inhibitor isorhamnetin further contributed to decrease the formation of bacterial biofilms without affecting the expression of PLY. In vivo S. pneumoniae infection confirmed that the pathological injury of lung tissue evoked by S. pneumoniae was ameliorated by isorhamnetin treatment. Collectively, these results presented that isorhamnetin could inhibit the biological activity of PLY, thus reducing the pathogenicity of S. pneumoniae. In summary, our study laid a foundation for the feasible anti-virulence strategy targeting PLY, and provided a promising PLY inhibitor for the treatment of S. pneumoniae infection.
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