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scopus(17)
Computational drug repurposing for antituberculosis therapy: Discovery of multi-strain inhibitors
ArticleAbstract: Tuberculosis remains the most afflicting infectious disease known by humankind, with one quarter ofPalabras claves:artificial neural networks, drug repurposing, ensemble, MLP, QSAR, Strain, Tuberculosis, Virtual ScreeningAutores:Alejandro Speck-Planche, Kleandrova V.V., Scotti M.T.Fuentes:scopusBET bromodomain inhibitors: fragment-based in silico design using multi-target QSAR models
ArticleAbstract: Epigenetics has become a focus of interest in drug discovery. In this sense, bromodomain-containingPalabras claves:artificial neural networks, BET bromodomain inhibitor, docking, Epigenetics, linear discriminant analysis, Molecular fragment, mt-QSARAutores:Alejandro Speck-Planche, Scotti M.T.Fuentes:scopus3D-QSAR methodologies and molecular modeling in bioinformatics for the search of novel anti-HIV therapies: Rational design of entry inhibitors
ReviewAbstract: Human immunodeficiency virus (HIV) is the responsible causal agent of acquired immunodeficiency syndPalabras claves:3D-QSAR, Anti-HIV, CCR5, CXCR4, Fragments, Gp120, Homology modeling, linear discriminant analysis, Molecular docking, QSAR, quantitative contributionsAutores:Alejandro Speck-Planche, Kleandrova V.V., Natalia Dias Soeiro Cordeiro M., Scotti M.T.Fuentes:scopusCurrent pharmaceutical design of antituberculosis drugs: Future perspectives
ArticleAbstract: The increasing resistance of Mycobacterium tuberculosis to the existing drugs has alarmed the worldwPalabras claves:3D-QSAR methodologies, Enzymatic inhibitors, Graph-theoretical approaches, Ligand based-drug design, Structure based-drug designAutores:Alejandro Speck-Planche, de Paulo-Emerenciano V., Scotti M.T.Fuentes:scopusCurrent tendencies in antimicrobial research: Medicinal chemistry of antibacterial agents and advances in the use of computational methodologies
OtherAbstract:Palabras claves:Autores:Alejandro Speck-Planche, Natalia Dias Soeiro Cordeiro M., Scotti M.T.Fuentes:scopusCell-based multi-target QSAR model for design of virtual versatile inhibitors of liver cancer cell lines
ArticleAbstract: Liver cancers are one of the leading fatal diseases among malignant neoplasms. Current chemotherapeuPalabras claves:ANTICANCER, Artificial Neural Network, Fragment, Liver cancer, multi-target, QSAR, virtual designAutores:Alejandro Speck-Planche, Kleandrova V.V., Nayarisseri A., Scotti L., Scotti M.T.Fuentes:scopusDesign of novel antituberculosis compounds using graph-theoretical and substructural approaches
ReviewAbstract: The increasing resistance of Mycobacterium tuberculosis to the existing drugs has alarmed the worldwPalabras claves:Antituberculosis, Discriminant analysis, Fragment contributions, Graph-theoretical descriptors, Massive screeningAutores:Alejandro Speck-Planche, de Paulo-Emerenciano V., López A., Pérez E., Scotti M.T., Uriarte E.Fuentes:scopusDesigning novel antitrypanosomal agents from a mixed graph-theoretical substructural approach
ArticleAbstract: Chagas disease is nowadays the most serious parasitic health problem. This disease is caused by TrypPalabras claves:Antitrypanosomal, Discriminant analysis, Fragment contributions, Graph theoretical descriptors, Massive screeningAutores:Alejandro Speck-Planche, de Paulo-Emerenciano V., López A., Pérez E., Scotti M.T., Uriarte E.Fuentes:scopusFragment-based approach for the in silico discovery of multi-target insecticides
ArticleAbstract: Pesticides represent extremely useful chemical and biochemical agents for the prevention of crop losPalabras claves:Fragments, Insecticides, linear discriminant analysis, QSAR, quantitative contributionsAutores:Alejandro Speck-Planche, Kleandrova V.V., Scotti M.T.Fuentes:scopusMulti-target Drug Discovery via PTML Modeling: Applications to the Design of Virtual Dual Inhibitors of CDK4 and HER2
ArticleAbstract: Background: Cyclin-dependent kinase 4 (CDK4) and the human epidermal growth factor receptor 2 (HER2)Palabras claves:Artificial Neural Network, Cáncer, Fragment, Local contributions, Pseudo-linear equation, PTML model, virtual designAutores:Alejandro Speck-Planche, Kleandrova V.V., Scotti L., Scotti M.T.Fuentes:scopus