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首页> 外文期刊>Journal of chemotherapy >Determining in vitro synergistic activities of tigecycline with several other antibiotics against Brucella melitensis using checkerboard and time-kill assays.
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Determining in vitro synergistic activities of tigecycline with several other antibiotics against Brucella melitensis using checkerboard and time-kill assays.

机译:使用棋盘和时间杀灭测定法测定替加环素与其他几种抗生素对布鲁氏菌的协同作用。

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摘要

Antimicrobial therapy of Brucella spp. infection is difficult because there are relatively few effective treatment regimens, and single-agent therapy has generally been considered inadequate due to unacceptably high relapse rates. tigecycline, the first in a new class of antimicrobials, the glycylcyclines, is a 9-t-butylglycylamido derivate of minocycline. in this study, the in vitro activity of tigecycline in combination with gentamicin, streptomycin, rifampin, co-trimoxazole, levofloxacin, and minocycline was investigated using the checkerboard method to evaluate 16 Brucella melitensis isolates. The time-kill method was used to determine the bactericidal activities of combinations of tigecycline with rifampin, gentamicin, and levofloxacin, which were found (via the checkerboard method) to have a synergistic effect in combinations with tigecycline. Using the checkerboard method, combinations of rifampin, gentamicin, and levofloxacin with tigecycline showed synergistic effects against 5 (31.2%), 3 (18.9%), and 8 (50%) of the isolates. No synergy was observed with tigecycline in combination with minocycline, streptomycin, or co-trimoxazole. tigecycline with gentamicin achieved the earliest complete killing at 4x miC (in 6 h), while complete killing with the other combinations was delayed up to 24 h. the time-kill method showed that the combination of tigecycline and levofloxacin had an antagonistic effect, while the checkerboard method detected synergy and no interaction effects. these data suggest that a combination regimen of tigecycline with gentamicin and rifampin may be a good choice for treating brucellosis.
机译:布鲁氏菌属的抗菌治疗。感染是困难的,因为有效的治疗方案相对较少,并且由于不可接受的高复发率,单药治疗通常被认为是不充分的。 tigecycline是新型抗菌剂中的首个化合物glycylcyclines,它是美满霉素的9-叔丁基糖基酰胺基衍生物。在这项研究中,采用棋盘法研究了替加环素与庆大霉素,链霉素,利福平,复方新诺明,左氧氟沙星和美满霉素的体外活性,以评估16种布鲁氏菌的分离物。用时间杀灭法确定替加环素与利福平,庆大霉素和左氧氟沙星的组合的杀菌活性,发现(通过棋盘法)与替加环素组合具有协同作用。使用棋盘法,利福平,庆大霉素和左氧氟沙星与替加环素的组合显示出对5株(31.2%),3株(18.9%)和8株(50%)的协同作用。替加环素与米诺环素,链霉素或复方新诺明合用时未观察到协同作用。替加环素与庆大霉素的结合在4x miC时(6小时)达到了最早的完全杀灭作用,而其他组合的完全杀伤作用则延迟了24小时。时间杀灭法表明,替加环素与左氧氟沙星联合使用具有拮抗作用,而棋盘法则具有协同作用,没有相互作用。这些数据表明,替加环素与庆大霉素和利福平的联合治疗可能是治疗布鲁氏菌病的不错选择。

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