首页> 外文期刊>Journal of Pure & Applied Microbiology >Investigations on the Inhibition Effects of 1,8-cineole against Microbial BiofilmsAU Wang, Lin Zhang, Jianhua Wei, Fengxiang Liu, Xiaoguang Yang, Meili Dong, Xue Wang, Hui Liu, Yan Yang, Zhiwei (yzws-123@163.com) Liu, Junxing (liujunxing0982@163.com)
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Investigations on the Inhibition Effects of 1,8-cineole against Microbial BiofilmsAU Wang, Lin Zhang, Jianhua Wei, Fengxiang Liu, Xiaoguang Yang, Meili Dong, Xue Wang, Hui Liu, Yan Yang, Zhiwei (yzws-123@163.com) Liu, Junxing (liujunxing0982@163.com)

机译:Investigations on the Inhibition Effects of 1,8-cineole against Microbial BiofilmsAU Wang, Lin Zhang, Jianhua Wei, Fengxiang Liu, Xiaoguang Yang, Meili Dong, Xue Wang, Hui Liu, Yan Yang, Zhiwei (yzws-123@163.com) Liu, Junxing (liujunxing0982@163.com)

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摘要

Bacteria living as biofilm are frequently reported to exhibit the resistances to the common antimicrobial agents. Hence, the in vitro antimicrobial activities of the compound 1,8-cineole were evaluated to explore the novel agent. The bioactivities were estimated by the MIC and MBC determinations on 8 species of bacteria and fungi, as well as the confocal laser scanning on 3 types of bacterial biofilms. It was found that the essential oil has good inhibiting activities against fungi rather than bacteria, especially Candida albicans, with the lowest MIC value (0.156 %). Both of gram-positive and gram-negative bacterial biofilms are sensitive to 1,8-cineole. In addition, there is linear relationship between inhibition activities and concentration of 1,8-cineole. Further, analysis revealed that 1,8-cineole can prompt the biofilm-surface bacteria to die off or live as planktonic, in order to help the immune system to remove the bacteria. Thus, 1,8-cineole could be judged as a kind of potential drug with rather antimicrobial activities.C1 Yang, Zhiwei; Jiamusi Univ, Sch Basic Med Sci, Dept Pathophysiol, Jiamusi 154007, Peoples R ChinaSC Infectious Diseases; Pharmacology & Pharmacy
机译:经常报道以生物膜为生命的细菌表现出对常见抗菌剂的抗性。因此,对化合物1,8-桉树脑的体外抗菌活性进行了评估,以探索该新型药物。通过对8种细菌和真菌的MIC和MBC测定以及在3种细菌生物膜上的共聚焦激光扫描来评估生物活性。发现该精油对真菌而不是细菌具有良好的抑制活性,特别是白色念珠菌,具有最低的MIC值(0.156%)。革兰氏阳性和革兰氏阴性细菌生物膜均对1,8-桉树脑敏感。另外,抑制活性与1,8-桉树脑的浓度之间存在线性关系。此外,分析表明1,8-桉树脑可以促使生物膜表面细菌死亡或以浮游生物的形式生活,以帮助免疫系统清除细菌。因此,1,8-桉树脑可被认为是一种具有相当强抗菌活性的潜在药物。佳木斯大学,基础医学院,病理生理学教研室,佳木斯154007,中国人民传染病学会;药理与药学

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