4.7 Article

Predicting Pharmacokinetic Properties of Potential Anticancer Agents via Their Chromatographic Behavior on Different Reversed Phase Materials

期刊

出版社

MDPI
DOI: 10.3390/ijms22084257

关键词

micellar chromatography; immobilized artificial membrane chromatography; RP-18e; QSAR(s); log K-p; log Ka,(HSA); log BB; Caco-2; f (u,brain); fused azaisocytosine-containing congeners

资金

  1. Medical University of Lublin, Poland [DS 211]

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The QSAR methodology was successfully utilized to predict the biological properties of three classes of compounds, demonstrating the importance and potential of liquid chromatographic techniques and QSAR methods in reducing unethical animal testing.
The Quantitative Structure-Activity Relationship (QSAR) methodology was used to predict biological properties, i.e., the blood-brain distribution (log BB), fraction unbounded in the brain (f(u,brain)), water-skin permeation (log K-p), binding to human plasma proteins (log K-a,K-HSA), and intestinal permeability (Caco-2), for three classes of fused azaisocytosine-containing congeners that were considered and tested as promising drug candidates. The compounds were characterized by lipophilic, structural, and electronic descriptors, i.e., chromatographic retention, topological polar surface area, polarizability, and molecular weight. Different reversed-phase liquid chromatography techniques were used to determine the chromatographic lipophilicity of the compounds that were tested, i.e., micellar liquid chromatography (MLC) with the ODS-2 column and polyoxyethylene lauryl ether (Brij 35) as the effluent component, an immobilized artificial membrane (IAM) chromatography with phosphatidylcholine column (IAM.PC.DD2) and chromatography with end-capped octadecylsilyl (ODS) column using aqueous solutions of acetonitrile as the mobile phases. Using multiple linear regression, we derived the statistically significant quantitative structure-activity relationships. All these QSAR equations were validated and were found to be very good. The investigations highlight the significance and possibilities of liquid chromatographic techniques with three different reversed-phase materials and QSARs methods in predicting the pharmacokinetic properties of our important organic compounds and reducing unethical animal testing.

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