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作 者:叶晓敏[1] 陆春[1] 朱国兴[1] 冯佩英[1] 赖维[1] 陈传杰[1] 林飞燕[1] 陈荣章[1]
机构地区:[1]中山大学附属第三医院皮肤科,广州510630
出 处:《中华微生物学和免疫学杂志》2011年第3期245-249,共5页Chinese Journal of Microbiology and Immunology
基 金:基因项目:广东省自然科学基金(8151008901000108)
摘 要:目的 研究解脲脲原体(Ureaplasma urealyticum,Uu)标准株及临床分离株体外形成生物被膜的能力及游离状态与形成生物被膜后药物敏感性的差异.方法 对Uu标准株3、8血清型(Uu3、Uu8)及从女性患者宫颈中分离鉴定的21株Uu临床株进行体外培养后,扫描电镜、激光共聚焦显微镜鉴定生物被膜形成,并在生物被膜形成前后进行约敏测定(四环素、红霉素、环丙沙星).配对秩和检验及x2检验分别比较Uu游离状态及形成生物被膜后最低抑菌浓度间及耐药率间的差异.结果 Uu3、Uu8及21株Uu临床株均具有体外形成生物被膜的能力.Uu形成牛物被膜后对四环素、红霉素及环丙沙星的最低抑菌浓度较游离状态明显增高(P〈0.001).Uu形成生物被膜后对红霉素及环丙沙星的耐药率增高具有统计学意义(P值分别为〈0.001及0.035),但对四环素的耐药率增高无统计学意义(P=0.293).结论 Uu标准株及临床株均具有体外形成生物被膜的能力,Uu形成生物被膜后对抗菌素的抵抗力增加,出现了多重耐药现象.Objective To study the ability of standard strain and clinical isolates of Ureaplasma spp. to form biofilms in vitro and to compare the antibiotic susceptibility of sessile cells and their planktonic counterparts. Methods A total of 21 Ureaplasma wealyticum(Uu) isolates recovered from female patients diagnosed with cervicitis and Uu serovar 3 and Uu serovar 8( Uu3, Uu8) were included. Scanning electron microscope and confocal scanning laser microscopy were used to identify biofilm formation. Conventional antibiotic susceptibility tests and biofilm susceptibility assays for tetracycline, erythromycin and ciprofloxacin were carried out. The paired rank sum test and was applied to analyze the statistical differences between the MIC and the minimal biofilm inhibitory concentration. The x2 test was applied to analyze the statistical differences of global resistance percentages between planktonic cells and sessile cells. Results Uu3, Uu8 and 21 Uu isolates all can form biofilms in vitro. Minimal inhibitory concentration of sessile cells compared with planktonic cells were obviously higher for tetracycline, erythromycin and ciprofloxacin (P 〈0.001). Global resistance percentages between planktonic cells and sessile cells were different for erythromycin (9.52% vs 61.90% , P 〈 0. 001), ciprofloxacin ( 80. 95% vs 100% , P = 0. 035 ) and tetracycline (4. 76% vs 14.29% , P =0.293). Conclusion Uu isolates and Uu1, Uu8 all can form biofilms in vitro, and biofilm formation can strengthen resistance of Uu to antibiotics, even multidrug resistance was observed.
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