Virtual Screening and Statistical Analysis in the Design of New Caffeine Analogues Molecules with Potential Epithelial Anticancer Activity

Author:

da Silva Costa Josivan1,da Silva Lopes Costa Karina1,Cruz Josiane Viana1,da Silva Ramos Ryan1,Silva Luciane Barros1,Do Socorro Barros Brasil Davi2,de Paula da Silva Carlos Henrique Tomich3,dos Santos Cleydson Breno Rodrigues1,da Cruz Macedo Williams Jorge4

Affiliation:

1. Laboratory of Modeling and Computational Chemistry, Federal University of Amapa, Department of Biological Sciences. Rod. Juscelino Kubitschek, Km 02, s/n, Jardim Marco Zero, 68902-280 Macapa-AP, Brazil

2. Institute of Technology, Federal University of Para, Av. Augusto Correa, 01, Belem, Para 66075-900, Brazil

3. Computational Laboratory of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto, Sao Paulo, Brazil

4. Laboratory of Molecular Modeling and Simulation System, Federal Rural University of Amazonia, Rua Joao Pessoa, 121, Campus Capanema-Centro, Capanema, Para 68700-030, Brazil

Abstract

About 132 thousand cases of melanoma (more severe type of skin cancer) were registered in 2014 according to the World Health Organization. This type of cancer significantly affects the quality of life of individuals. Caffeine has shown potential inhibitory effect against epithelial cancer. In this study, it was proposed to obtain new caffeine-based molecules with potential epithelial anticancer activity. For this, a training set of 21 molecules was used for pharmacophore perception procedures. Multiple linear regression analyses were used to propose mono-, bi-, tri-, and tetra-parametric models applied in the prediction of the activity. The generated pharmacophore was used to select 350 molecules available at the ZINCpharmer server, followed by reduction to 24 molecules, after selection using the Tanimoto index, yielding 10 molecules after final selection by predicted activity values > 1.5229. These ten molecules had better pharmacokinetic properties than the other ones used as reference and within the clinically significant limits. Only two molecules show minor hits of toxicity and were submitted to molecular docking procedures, showing BFE (binding free energy) values lower than the reference values. Statistical analyses indicated strong negative correlations between BFE and pharmacophoric properties (high influence on BFE lowering) and practically null correlation between BFE and BBB. The two most promising molecules can be indicated as candidates for further in vitro and in vivo analyzes.

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,Pharmacology

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