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Successful treatment of biofilm infections using shock waves combined with antibiotic therapy

机译:冲击波结合抗生素疗法成功治疗生物膜感染

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摘要

Many bacteria secrete a highly hydrated framework of extracellular polymer matrix on suitable substrates and embed within the matrix to form a biofilm. Bacterial biofilms are observed on many medical devices, endocarditis, periodontitis and lung infections in cystic fibrosis patients. Bacteria in biofilm are protected from antibiotics and >1,000 times of the minimum inhibitory concentration may be required to treat biofilm infections. Here, we demonstrated that shock waves could be used to remove Salmonella, Pseudomonas and Staphylococcus biofilms in urinary catheters. The studies were extended to a Pseudomonas chronic pneumonia lung infection and Staphylococcus skin suture infection model in mice. The biofilm infections in mice, treated with shock waves became susceptible to antibiotics, unlike untreated biofilms. Mice exposed to shock waves responded to ciprofloxacin treatment, while ciprofloxacin alone was ineffective in treating the infection. These results demonstrate for the first time that, shock waves, combined with antibiotic treatment can be used to treat biofilm infection on medical devices as well as in situ infections.
机译:许多细菌在合适的基质上分泌细胞外聚合物基质高度水合的骨架,并嵌入基质中以形成生物膜。在许多医疗器械,心内膜炎,牙周炎和囊性纤维化患者的肺部感染中均观察到细菌生物膜。生物膜中的细菌受到抗生素的保护,治疗生物膜感染可能需要最低抑菌浓度的> 1,000倍。在这里,我们证明了冲击波可用于去除导尿管中的沙门氏菌,假单胞菌和葡萄球菌生物膜。研究扩展到了小鼠假单胞菌慢性肺炎肺感染和葡萄球菌皮肤缝合线感染模型。与未经处理的生物膜不同,用冲击波处理的小鼠中的生物膜感染变得对抗生素敏感。暴露于冲击波的小鼠对环丙沙星治疗有反应,而单独使用环丙沙星治疗感染无效。这些结果首次证明,冲击波结合抗生素治疗可用于治疗医疗器械上的生物膜感染以及原位感染。

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