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首页> 外文期刊>Frontiers in Microbiology >In vivo antimicrobial activity of marbofloxacin against Pasteurella multocida in a tissue cage model in calves
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In vivo antimicrobial activity of marbofloxacin against Pasteurella multocida in a tissue cage model in calves

机译:犊牛组织笼模型中马波沙星的体内抗微生物活性

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Marbofloxacin is a fluoroquinolone specially developed for use in veterinary medicine with broad-spectrum antibacterial activity. The objective of our study was to re-evaluate in vivo antimicrobial activity of marbofloxacin against Pasteurella multocida using subcutaneously implanted tissue cages in calves. Calves were infected by direct injection into tissue cages with P. multocida (type B, serotype 2), then intramuscularly received a range of marbofloxacin doses 24 h after inoculation. The ratio of 24 h area under the concentration-time curve divided by the minimum inhibitory concentration or the mutant prevention concentration (AUC_(24)_(h)/MIC or AUC_(24)_(h)/MPC) was the pharmacokinetic-pharmacodynamic (PK/PD) index that best described the effectiveness of marbofloxacin against P. multocida ( R ~(2)= 0.8514) by non-linear regression analysis. Marbofloxacin exhibited a good antimicrobial activity in vivo . The levels of AUC_(24)_(h)/MIC and AUC_(24)_(h)/MPC that produced 50% (1.5log_(10)CFU/mL reduction) and 90% (3log_(10)CFU/mL reduction) of maximum response were 18.60 and 50.65 h, 4.67 and 12.89 h by using sigmoid E_(max) model WINNONLIN software, respectively. The in vivo PK/PD integrated methods by tissue cage model display the advantage of the evaluation of antimicrobial activity and the optimization of the dosage regimen for antibiotics in the presence of the host defenses, especially in target animal of veterinary interest.
机译:Marbofloxacin是一种氟喹诺酮,专门开发用于具有广谱抗菌活性的兽药。我们研究的目的是使用小牛皮下植入的组织笼,重新评估马尔福沙星对多杀巴斯德氏菌的体内抗菌活性。将小牛直接注射入多杀性疟原虫(B型,血清型2)感染组织笼,然后在接种后24小时肌内注射一定剂量的marbofloxacin。浓度-时间曲线下的24小时面积之比除以最小抑制浓度或突变预防浓度(AUC_(24)_(h)/ MIC或AUC_(24)_(h)/ MPC)为药代动力学-药效学(PK / PD)指数通过非线性回归分析最能描述马波沙星抗疟原虫的功效(R〜(2)= 0.8514)。 Marbofloxacin在体内表现出良好的抗菌活性。产生50%(1.5log_(10)CFU / mL降低)和90%(3log_(10)CFU / mL的AUC_(24)_(h)/ MIC和AUC_(24)_(h)/ MPC的水平通过使用Sigmoid E_(max)模型WINNONLIN软件,最大响应降低时间分别为18.60和50.65 h,4.67和12.89 h。通过组织笼模型进行的体内PK / PD集成方法显示了在宿主防御存在的情况下(尤其是在兽医感兴趣的目标动物中)评估抗菌活性和优化抗生素给药方案的优势。

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