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首页> 外文期刊>International journal of antimicrobial agents >Evaluation of two in vitro pharmacodynamic simulation models: Microfiltration versus centrifugation-filtration
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Evaluation of two in vitro pharmacodynamic simulation models: Microfiltration versus centrifugation-filtration

机译:两种体外药效学模拟模型的评估:微滤与离心过滤

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Pharmacodynamic in vitro models that simulate serum antimicrobial concentrations provide more information about the activity of an antibiotic than MICs or traditional time-kill methods. The aim of this study was to compare two pharmacodynamic simulation models using ATCC strains of five different species and five antibiotics. In the first model (Centriprep-10 system), a filtration-centrifugation process was used to eliminate the antibiotic; in the second model (microfiltration system) no centrifugation was necessary. The antibiotic concentrations tested were similar to those in serum after normal doses of cefuroxime, clarithromycin, ciprofloxacin, gentamicin and cefotaxime. No significant differences were observed in the killing rates between the models except in the case of Haemophilus influenzae and cefotaxime. The new microfiltration model had the following advantages: lack of the carry-over effect, the absence of centrifugation that could damage bacteria and the possibility of increasing the number of incubation periods to give a better fit of the kinetic profile of man. (C) 2001 Elsevier Science B.V. and the International Society of Chemotherapy. All rights reserved. [References: 19]
机译:与MIC或传统的时间杀灭方法相比,模拟血清抗菌素浓度的体外药效学模型可提供有关抗生素活性的更多信息。本研究的目的是比较使用5种不同物种和5种抗生素的ATCC菌株的两种药效学模拟模型。在第一个模型(Centriprep-10系统)中,使用了过滤-离心分离工艺来去除抗生素。在第二种模型(微滤系统)中,无需离心。正常剂量的头孢呋辛,克拉霉素,环丙沙星,庆大霉素和头孢噻肟后,所测抗生素浓度与血清中的相似。除流感嗜血杆菌和头孢噻肟外,模型之间的杀灭率没有显着差异。新的微滤模型具有以下优点:没有残留效应,没有可能损坏细菌的离心分离,以及可能增加孵育时间以更好地适应人体动力学的可能性。 (C)2001 Elsevier Science B.V.和国际化学疗法学会。版权所有。 [参考:19]

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