TY - JOUR
T1 - Ligand-based discovery of novel trypanosomicidal drug-like compounds
T2 - In silico identification and experimental support
AU - Castillo-Garit, Juan Alberto
AU - Vega, Maria Celeste
AU - Rolón, Miriam
AU - Marrero-Ponce, Yovani
AU - Gómez-Barrio, Alicia
AU - Escario, José A.
AU - Bello, Alfredo Alvarez
AU - Montero, Alina
AU - Torrens, Francisco
AU - Pérez-Giménez, Facundo
AU - Arán, Vicente J.
AU - Abad, Concepción
N1 - Funding Information:
Castillo-Garit, J.A. and Marrero-Ponce, Y. thanks the program ‘Estades Temporals per a Investigadors Convidats’ for a fellowship to work at Valencia University in 2010–2011. The authors acknowledge also the partial financial support from Spanish Ministry of Science and Innovation (Projects SAF2009-10399 , SAF2009-13059-C03-01 and SAF2009-13059-C03-02 ). F.T. acknowledges financial support from the Spanish Minister de Ciencia e Innovación (Project No. BFU 2010-19118 ). Finally, but not least, this work was supported in part by VLIR (Vlaamse InterUniversitaire Raad, Flemish Interuniversity Council, Belgium) under the IUC Program VLIR-UCLV.
PY - 2011/8
Y1 - 2011/8
N2 - Two-dimensional bond-based linear indices and linear discriminant analysis are used in this report to perform a quantitative structure-activity relationship study to identify new trypanosomicidal compounds. A database with 143 anti-trypanosomal and 297 compounds having other clinical uses, are utilized to develop the theoretical models. The best discriminant models computed using bond-based linear indices provides accuracies greater than 90 for both training and test sets. Our models identify as anti-trypanosomals five out of nine compounds of a set of already-synthesized substances. The in vitro anti-trypanosomal activity of this set against epimastigote forms of Trypanosoma cruzi is assayed. Both models show a perfect agreement between theoretical predictions and experimental results. The compounds identified as active ones show more than 98% of anti-epimastigote elimination (AE) at a concentration of 100 μg/mL. Besides, three compounds show more than 70% of AE at a concentration of 10 μg/mL. Finally, compounds with the best "activity against epimastigote forms/unspecific cytotoxicity" ratio are evaluated using an amastigote susceptibility assay. It should be noticed that, compound Va7-71 exhibit a 100% of intracellular amastigote elimination and shows similar activity when compared to a standard trypanosomicidal as nifurtimox. Finally, we can emphasize that, the present algorithm constitutes a step forward in the search for efficient ways of discovering new anti-trypanosomal compounds.
AB - Two-dimensional bond-based linear indices and linear discriminant analysis are used in this report to perform a quantitative structure-activity relationship study to identify new trypanosomicidal compounds. A database with 143 anti-trypanosomal and 297 compounds having other clinical uses, are utilized to develop the theoretical models. The best discriminant models computed using bond-based linear indices provides accuracies greater than 90 for both training and test sets. Our models identify as anti-trypanosomals five out of nine compounds of a set of already-synthesized substances. The in vitro anti-trypanosomal activity of this set against epimastigote forms of Trypanosoma cruzi is assayed. Both models show a perfect agreement between theoretical predictions and experimental results. The compounds identified as active ones show more than 98% of anti-epimastigote elimination (AE) at a concentration of 100 μg/mL. Besides, three compounds show more than 70% of AE at a concentration of 10 μg/mL. Finally, compounds with the best "activity against epimastigote forms/unspecific cytotoxicity" ratio are evaluated using an amastigote susceptibility assay. It should be noticed that, compound Va7-71 exhibit a 100% of intracellular amastigote elimination and shows similar activity when compared to a standard trypanosomicidal as nifurtimox. Finally, we can emphasize that, the present algorithm constitutes a step forward in the search for efficient ways of discovering new anti-trypanosomal compounds.
KW - Amastigote susceptibility assay
KW - Anti-epimastigote elimination
KW - Bond-based linear indices
KW - Trypanosoma cruzi
KW - Trypanosomicidal
UR - http://www.scopus.com/inward/record.url?scp=79958285680&partnerID=8YFLogxK
U2 - 10.1016/j.ejmech.2011.04.057
DO - 10.1016/j.ejmech.2011.04.057
M3 - Artículo
AN - SCOPUS:79958285680
SN - 0223-5234
VL - 46
SP - 3324
EP - 3330
JO - European Journal of Medicinal Chemistry
JF - European Journal of Medicinal Chemistry
IS - 8
ER -