Sestraş Radu E, Jäntschi Lorentz, Bolboacă Sorana D
University of Agricultural Science and Veterinary Medicine Cluj-Napoca, 3-5 Mănăştur, Cluj-Napoca 400372, Romania.
Technical University of Cluj-Napoca, 28 Memorandumului, Cluj-Napoca 400114, Romania.
Int J Mol Sci. 2012;13(4):5207-5229. doi: 10.3390/ijms13045207. Epub 2012 Apr 24.
A contingency of observed antimicrobial activities measured for several compounds vs. a series of bacteria was analyzed. A factor analysis revealed the existence of a certain probability distribution function of the antimicrobial activity. A quantitative structure-activity relationship analysis for the overall antimicrobial ability was conducted using the population statistics associated with identified probability distribution function. The antimicrobial activity proved to follow the Poisson distribution if just one factor varies (such as chemical compound or bacteria). The Poisson parameter estimating antimicrobial effect, giving both mean and variance of the antimicrobial activity, was used to develop structure-activity models describing the effect of compounds on bacteria and fungi species. Two approaches were employed to obtain the models, and for every approach, a model was selected, further investigated and found to be statistically significant. The best predictive model for antimicrobial effect on bacteria and fungi species was identified using graphical representation of observed vs. calculated values as well as several predictive power parameters.
分析了几种化合物对一系列细菌所测得的抗菌活性的偶然性。因子分析揭示了抗菌活性存在某种概率分布函数。使用与已确定概率分布函数相关的总体统计数据,对整体抗菌能力进行了定量构效关系分析。如果只有一个因素变化(如化合物或细菌),抗菌活性证明遵循泊松分布。用于估计抗菌效果的泊松参数给出了抗菌活性的均值和方差,用于建立描述化合物对细菌和真菌物种作用的构效模型。采用了两种方法来获得模型,对于每种方法,都选择了一个模型,进一步进行研究并发现具有统计学意义。通过观察值与计算值的图形表示以及几个预测能力参数,确定了对细菌和真菌物种抗菌效果的最佳预测模型。