EventsThe 9th International Electronic Conference on Synthetic Organic Chemistry
Published
This submission belongs to the session g. Computational Chemistry of the event The 9th International Electronic Conference on Synthetic Organic Chemistry
Published date
01 Nov, 2005
Citation
Alina Montero-Torres, María Celeste Vega, Yovani Marrero-Ponce, Miriam Rolón, Alicia Gómez-Barrio, José Antonio Escario, Vicente J. Arán, Antonio R. Martínez-Fernández, Alfredo Meneses-Marcel, A Novel Non-Stochastic Quadratic Fingerprints-Based Approach for the “in silico” Discovery of New Antitrypanosomal Compounds, in Proceedings of The 9th International Electronic Conference on Synthetic Organic Chemistry, 1 November–30 November 2005, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-9-01663
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A Novel Non-Stochastic Quadratic Fingerprints-Based Approach for the “in silico” Discovery of New Antitrypanosomal Compounds

Alina Montero-Torres 1
María Celeste Vega 2
Yovani Marrero-Ponce 1,3
Miriam Rolón 2
Alicia Gómez-Barrio 2
José Antonio Escario 2
Vicente J. Arán 4
Antonio R. Martínez-Fernández 2
Alfredo Meneses-Marcel 5
1. Department of Synthesis and Drug Design, Chemical Bioactive Center, Central University of Las Villas, Santa Clara, 54830, Villa Clara, Cuba
2. Department of Parasitology, Faculty of Pharmacy, UCM, 28040 Madrid, Spain
3. Department of Pharmacy, Faculty of Chemistry and Pharmacy, Central University of Las Villas, Santa Clara, 54830 Villa Clara, Cuba
4. Institute of Medicinal Chemistry, CSIC, 28006 Madrid, Spain
5. Department of Parasitology, Chemical Bioactive Center, Central University of Las Villas, Santa Clara, 54830 Villa Clara, Cuba
Abstract
A Non-Stochastic Quadratic Fingerprints-based approach is introduced to classify and design, in a rational way, new antitrypanosomal compounds. A data set of 153 organic-chemicals; 62 with antitrypanosomal activity and 91 having other clinical uses, was processed by a k-means cluster analysis in order to design training and predicting data sets. Afterwards, a linear classification function was derived allowing the discrimination between active and inactive compounds. The model classifies correctly more than 93% of chemicals in both training and external prediction groups. The predictability of this discriminant function was also assessed by a leave-group-out experiment, in which 10% of the compounds were removed at random at each time and their activity a posteriori predicted. Also a comparison with models generated using four well-known families of 2D molecular descriptors was carried out. As an experiment of virtual lead generation, the present TOMOCOMD approach was finally satisfactorily applied on the virtual evaluation of ten already synthesized compounds. The in vitro antitrypanosomal activity of this series against epimastigotes forms of T. cruzi was assayed. The model was able to predict correctly the behaviour of these compounds in 90% of the cases.
Keywords
antitrypanosomal compounds
Chagas’ disease
LDA-based-QSAR-model
non-stochastic quadratic indices
QSAR
TOMOCOMD software
Periodic Table of Local Anaesthetics (Procaine Analogues)
A Novel Approach for Computer-Aided “Rational” Drug Design: Theoretical and Experimental Assessment of a Promising Method for Virtual Screening and in silico Design of New Antimalarial Compounds