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评估抗真菌药物对酵母和丝状真菌的体外联合作用:不同药物相互作用模型的比较

Assessing in vitro combinations of antifungal drugs against yeasts and filamentous fungi: comparison of different drug interaction models.

作者信息

Meletiadis Joseph, Verweij Paul E, TeDorsthorst Debbie T A, Meis Jacques F G M, Mouton Johan W

机构信息

Department of Medical Microbiology, Nijmegen University Center for Infectious Diseases, Nijmegen, The Netherlands.

出版信息

Med Mycol. 2005 Mar;43(2):133-52. doi: 10.1080/13693780410001731547.

Abstract

Non-parametric and parametric approaches of two competing zero-interaction theories--the Loewe additivity and the Bliss independence - were evaluated for analyzing the in vitro interactions of various antifungal drugs. Fifty-one data sets, derived from three drug combinations, tested in triplicate against 17 clinical yeast and mold isolates with a two-dimensional checkerboard microdilution technique, were selected to span from strong synergy to strong antagonism. These were analyzed with the standard FIC index model and modern concentration-effect response surface models: the fully parametric model developed by Greco et al. and the 3-D analysis developed by Prichard et al. The FIC index model is subjective, sensitive to experimental errors and resulted in approximated results and variable conclusions depending on the MIC endpoints determined and interpretation endpoints used. By using the MIC-2 endpoint (lowest drug concentration showing 50% of growth) for calculating the FIC indices, problems due to trailing phenomena were reduced and weak interactions could be detected; higher levels of reproducibility and agreement with the other models were achieved using the MIC-0 and MIC-1 (lowest drug concentration showing 10 and 25% of growth, respectively). High reproducibility was achieved in interpreting the FIC indices when the cutoffs of 0.25 and 4 (for single experiments) and the cutoff of 1 (for replicates) were used for defining the limits of additivity/indifference. Although the fully parametric Greco model did not describe precisely the entire response surface of all antifungal drug interactions, it was able to differentiate synergistic from non-synergistic interactions with a non-unit, reproducible, concentration-independent interaction parameter, including its uncertainty, without requiring replication. The Bliss independence based models resulted in mosaics of synergistic and antagonistic combinations, raising questions about the concentration-dependent nature of antifungal drug interaction. The sum of all statistically significant interactions were used as a summary interaction parameter for the entire response surface, concluding synergy or antagonism when it was positive or negative, respectively. The cutoffs of 100% and 200% were used to distinguish weak and moderate interactions, respectively in 12-16 x 8-12 checkerboard formats. Semi-parametric approaches need particular care as experimental errors are not eliminated from the entire response surface.

摘要

为分析各种抗真菌药物的体外相互作用,对两种相互竞争的零相互作用理论(Loewe加和性和Bliss独立性)的非参数和参数方法进行了评估。从三种药物组合中获得了51个数据集,采用二维棋盘微量稀释技术对17种临床酵母和霉菌分离株进行了三次重复测试,这些数据集涵盖了从强协同作用到强拮抗作用的范围。使用标准的FIC指数模型和现代浓度-效应响应面模型对这些数据集进行了分析:Greco等人开发的完全参数模型和Prichard等人开发的三维分析模型。FIC指数模型具有主观性,对实验误差敏感,并且根据所确定的MIC终点和所使用的解释终点会得出近似结果和可变结论。通过使用MIC-2终点(显示50%生长的最低药物浓度)来计算FIC指数,减少了拖尾现象导致的问题,并能够检测到弱相互作用;使用MIC-0和MIC-1(分别显示10%和25%生长的最低药物浓度)时,与其他模型相比具有更高的重现性和一致性。当使用0.25和4(针对单个实验)以及1(针对重复实验)的截断值来定义加和性/无差异的界限时,在解释FIC指数方面实现了高重现性。尽管完全参数化的Greco模型没有精确描述所有抗真菌药物相互作用的整个响应面,但它能够通过一个非单位、可重现、与浓度无关的相互作用参数(包括其不确定性)来区分协同作用和非协同作用,而无需重复实验。基于Bliss独立性的模型产生了协同和拮抗组合的镶嵌图,引发了关于抗真菌药物相互作用浓度依赖性本质的问题。所有具有统计学意义的相互作用的总和被用作整个响应面的汇总相互作用参数,当其为正时得出协同作用结论,为负时得出拮抗作用结论。在12 - 16×8 - 12棋盘格式中,分别使用100%和200%的截断值来区分弱相互作用和中等相互作用。半参数方法需要特别注意,因为整个响应面中并未消除实验误差。

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