Stasiak Jolanta, Koba Marcin, Bober Leszek, Baczek Tomasz
Department of Medicinal Chemistry, Faculty of Pharmacy, Collegium Medicum, Nicolaus Copernicus University, Bydgoszcz, Poland; E-Mails:
Int J Mol Sci. 2010 Jul 9;11(7):2681-98. doi: 10.3390/ijms11072681.
Evaluation of relationships between molecular modeling structural parameters and high-performance liquid chromatography (HPLC) retention data of 11 cardiovascular system drugs by principal component analysis (PCA) in relation to their pharmacological activity was performed. The six retention data parameters were determined on three different HPLC columns (Nucleosil C18 AB with octadecylsilica stationary phase, IAM PC C10/C3 with chemically bounded phosphatidylcholine, and Nucleosil 100-5 OH with chemically bounded propanodiole), and using isocratically acetonitrile: Britton-Robinson buffer as the mobile phase. Additionally, molecular modeling studies were performed with the use of HyperChem software and MM+ molecular mechanics with the semi-empirical AM1 method deriving 20 structural descriptors. Factor analysis obtained with the use of various sets of parameters: structural parameters, HPLC retention data, and all 26 considered parameters, led to the extraction of two main factors. The first principal component (factor 1) accounted for 44-57% of the variance in the data. The second principal component (factor 2) explained 29-33% of data variance. Moreover, the total data variance explained by the first two factors was at the level of 73-90%. More importantly, the PCA analysis of the HPLC retention data and structural parameters allows the segregation of circulatory system drugs according to their pharmacological (cardiovascular) properties as shown by the distribution of the individual drugs on the plane determined by the two principal components (factors 1 and 2).
通过主成分分析(PCA)对11种心血管系统药物的分子建模结构参数与高效液相色谱(HPLC)保留数据之间的关系进行了评估,并将其与药物活性相关联。在三种不同的HPLC柱(具有十八烷基硅胶固定相的Nucleosil C18 AB柱、具有化学键合磷脂酰胆碱的IAM PC C10/C3柱和具有化学键合丙二醇的Nucleosil 100-5 OH柱)上测定了六个保留数据参数,并使用乙腈:Britton-Robinson缓冲液等度洗脱作为流动相。此外,使用HyperChem软件和MM+分子力学以及半经验AM1方法进行了分子建模研究,得出了20个结构描述符。使用各种参数集(结构参数、HPLC保留数据以及所有26个考虑的参数)进行因子分析,提取出两个主要因子。第一主成分(因子1)占数据方差的44 - 57%。第二主成分(因子2)解释了29 - 33%的数据方差。此外,前两个因子解释的总数据方差在73 - 90%的水平。更重要的是,对HPLC保留数据和结构参数进行的PCA分析能够根据循环系统药物的药理(心血管)特性对其进行分离,这在由两个主成分(因子1和因子2)确定的平面上各药物的分布情况中得到了体现。