Current Drug Discovery Technologies

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Predictive QSAR Modeling for the Successful Predictions of the ADMET Properties of Candidate Drug Molecules
Current Drug Discovery Technologies - Tập 4 Số 3 - Trang 141-149 - 2007
Mahmud Khan, Ingebrigt Sylte
A Computer-Based Approach to the Rational Discovery of New Trichomonacidal Drugs by Atom-Type Linear Indices
Current Drug Discovery Technologies - Tập 2 Số 4 - Trang 245-265 - 2005
Yovani Marrero‐Ponce, Yanetsy Machado-Tugores, David M. Pereira, José Aso Escario, Alicia Gómez‐Barrio, Juan José Nogal‐Ruiz, María C. Ochoa, Vicente J. Arán, A. R. Martínez‐Fernández, Rory Garcia Sanchez, Alina Montero, Francisco Torrens, Alfredo Meneses‐Marcel
In-Vitro Assessment and Pharmacodynamics of Nimesulide Incorporated Aloe vera Transemulgel
Current Drug Discovery Technologies - Tập 11 Số 2 - Trang 162-167 - 2014
K.R. Vandana, Prasanna Raju Yalavarthi, C R Sundaresan, Raghava N. Sriramaneni, Harini Chowdary Vadlamudi
Designing Potential Antitrypanosomal Thiazol-2-ethylamines through Predictive Regression Based and Classification Based QSAR Analyses
Current Drug Discovery Technologies - Tập 14 Số 1 - Trang 39-52 - 2017
Sk. Abdul Amin, Nilanjan Adhikari, Sonam Bhargava, Tarun Jha, Shovanlal Gayen

Background: Thiazol-2-ethylamine is recently reported to be an interesting scaffold having antitrypansomal activity for the treatment of sleeping sickness.

Methods: Statistically significant, robust and validated regression-based QSAR models are constructed for a series of antitrypansomal thiazol-2-ethylamines. Moreover, classification-based QSAR analyses (linear discriminant analysis and Bayesian classification modelling) are also performed to identify the important structural features controlling antitrypanosomal activity.

Results: Molecular fingerprints such as N-piperidinyl and 2-fluorophenyl functions may be responsible for higher antitrypanosomal activity whereas compounds with chlorophenyl moiety and compounds with unsaturated nitrogen atom possess poor activity. These results are supported by the regression-based QSAR model as well as the SAR observations.

Conclusion: Finally, fifteen new compounds bearing thiazol-2-ethylamine scaffold are designed and predicted along with their drug-likeness properties. Therefore, this study may provide important structural aspects of designing new antitrypansomal agents with higher activity.

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