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Antibacterial effects of Traditional Chinese Medicine monomers against Streptococcus pneumoniae via inhibiting pneumococcal histidine kinase (VicK)

机译:中药单体通过抑制肺炎球菌组氨酸激酶(VicK)对肺炎链球菌的抗菌作用

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摘要

Two-component systems (TCSs) have the potential to be an effective target of the antimicrobials, and thus received much attention in recent years. VicK/VicR is one of TCSs in Streptococcus pneumoniae (S. pneumoniae), which is essential for pneumococcal survival. We have previously obtained several Traditional Chinese Medicine monomers using a computer-based screening. In this study, either alone or in combination with penicillin, their antimicrobial activities were evaluated based on in vivo and in vitro assays. The results showed that the MICs of 5′-(Methylthio)-5′-deoxyadenosine, octanal 2, 4-dinitrophenylhydrazone, deoxyshikonin, kavahin, and dodecyl gallate against S. pneumoniae were 37.1, 38.5, 17, 68.5, and 21 μg/mL, respectively. Time-killing assays showed that these compounds elicited bactericidal effects against S. pneumoniae D39 strain, which led to a 6-log reduction in CFU after exposure to compounds at four times of the MIC for 24 h. The five compounds inhibited the growth of Streptococcus pyogenes, Streptococcus mitis, Streptococcus mutans or Streptococcus pseudopneumoniae, meanwhile, deoxyshikonin and dodecyl gallate displayed strong inhibitory activities against Staphylococcus aureus. These compounds showed no obvious cytotoxicity effects on Vero cells. Survival time of the mice infected by S. pneumoniae strains was prolonged by the treatment with the compounds. Importantly, all of the five compounds exerted antimicrobial effects against multidrug-resistant clinical strains of S. pneumoniae. Moreover, even at sub-MIC concentration, they inhibited cell division and biofilm formation. The five compounds all have enhancement effect on penicillin. Deoxyshikonin and dodecyl gallate showed significantly synergic antimicrobial activity with penicillin in vivo and in vitro, and effectively reduced nasopharyngeal and lung colonization caused by different penicillin-resistant pneumococcal serotypes. In addition, the two compounds also showed synergic antimicrobial activity with erythromycin and tetracycline. Taken together, our results suggest that these novel VicK inhibitors may be promising compounds against the pneumococcus, including penicillin-resistant strains.
机译:两组分系统(TCS)有可能成为抗菌药物的有效靶标,因此近年来受到了广泛关注。 VicK / VicR是肺炎链球菌(S. pneumoniae)中的TCS之一,它对肺炎球菌的生存至关重要。我们以前已经使用基于计算机的筛选方法获得了几种中药单体。在这项研究中,无论是单独使用还是与青霉素联合使用,都基于体内和体外试验评估了它们的抗菌活性。结果表明,5'-(甲硫基)-5'-脱氧腺苷,辛醛2、4-二硝基苯基phenyl,脱氧紫草宁,卡瓦因和十二烷基没食子酸酯对肺炎链球菌的MIC分别为37.1、38.5、17、68.5和21μg/ mL,分别。时间杀灭试验表明,这些化合物对肺炎链球菌D39菌株具有杀菌作用,在以MIC的四倍暴露24小时后,其CFU降低了6个对数。这五种化合物抑制化脓性链球菌,变形链球菌,变形链球菌或假性肺炎链球菌的生长,同时,脱氧shikonin和十二烷基没食子酸酯显示出对金黄色葡萄球菌的强抑制活性。这些化合物对Vero细胞没有明显的细胞毒性作用。用该化合物处理可延长被肺炎链球菌菌株感染的小鼠的存活时间。重要的是,所有这五种化合物均对肺炎链球菌具有多重耐药性的临床菌株发挥了抗菌作用。而且,即使在低于MIC浓度下,它们也抑制细胞分裂和生物膜形成。这五种化合物对青霉素都有增强作用。脱氧shikonin和十二烷基没食子酸酯在体内和体外显示出与青霉素显着的协同抗菌活性,并有效减少了由不同的耐青霉素肺炎球菌血清型引起的鼻咽和肺部定植。另外,这两种化合物还显示出与红霉素和四环素的协同抗菌活性。两者合计,我们的结果表明,这些新型的VicK抑制剂可能是对抗肺炎球菌的有前途的化合物,包括耐青霉素的菌株。

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