Loratadine inhibits Staphylococcus aureus virulence and biofilm formation

There are no anti-virulence and anti-biofilm treatments for Staphylococcus aureus infection. We found that 25 μM loratadine inhibits S. aureus biofilm formation under static or flow-based conditions. Testing of loratadine effects on 255 clinical S. aureus strains with varying biofilm robustness show...

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Veröffentlicht in:iScience 2022-02, Vol.25 (2), p.103731-103731, Article 103731
Hauptverfasser: Zheng, Jinxin, Shang, Yongpeng, Wu, Yang, Zhao, Yuxi, Chen, Zhong, Lin, Zhiwei, Li, Peiyu, Sun, Xiang, Xu, Guangjian, Wen, Zewen, Chen, Junwen, Wang, Yu, Wang, Zhanwen, Xiong, Yanpeng, Deng, Qiwen, Qu, Di, Yu, Zhijian
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Sprache:eng
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Zusammenfassung:There are no anti-virulence and anti-biofilm treatments for Staphylococcus aureus infection. We found that 25 μM loratadine inhibits S. aureus biofilm formation under static or flow-based conditions. Testing of loratadine effects on 255 clinical S. aureus strains with varying biofilm robustness showed inhibition of biofilm formation in medium and strong, but not weak, biofilm-producing strains. At 25 μM, loratadine reduced pigmentation and hemolysis of the bacteria without affecting growth. Loratadine (5 mg/kg) reduced mortality in S. aureus pulmonary infection model mice and acted synergistically with vancomycin to reduce pulmonary bacterial load and levels of inflammatory cytokines in bronchoalveolar lavage fluid. Loratadine analogues (side-chain carbamate moiety changed) inhibited biofilm formation, pigmentation, and hemolysis of S. aureus. Regarding mechanism, loratadine exposure reduced RNA levels of virulence-related S. aureus genes, and loratadine-induced mutations in MgrA reduced loratadine-MgrA binding. Overexpression of mutated mgrA in wild-type S. aureus decreased the biofilm formation inhibition effect of loratadine. [Display omitted] •Loratadine inhibits S. aureus biofilm formation under static or flow conditions•Loratadine reduced mortality in S. aureus pulmonary infection model mice•Loratadine synergistically with vancomycin reduced pulmonary bacterial load•Loratadine-induced mutations in MgrA reduced loratadine-MgrA binding Drugs; Microbiology; Microbiofilms
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2022.103731