Drug affinity and function depend on the different protonation species (present in the biological context) that generate different conformational ensembles with different structural features and, hence, different physico-chemical properties. In the present review article these strongly interdependent structural features will be considered for their crucial role in ligand-based QSAR modeling and drug design by using quantum chemical electronic/reactivity descriptors and molecular shape description. Some selected and relevant examples illustrate the role of these molecular descriptors, computed on the bioactive protonation states and conformers, as determinant factors in mechanistic/causative QSAR analysis
In this article, we review some recent (covering approximately the last four years) applications of ...
A basic problem in QSAR modeling is how to obtain proper molecular conformations to generate descrip...
In this paper, we report the first study aimed at correlating pharmacological properties with molecu...
Drug affinity and function depend on the different protonation species (present in the biological co...
The elucidation of a set of chemical/physical properties modulating the relationship between the che...
The comparative use of classical, quantum chemical (QC) ligand-based (LB) and structure-based (SB) q...
Abstract Two dynamic techniques recently developed to account for conformational flexibility of chem...
The correct chemical approach to molecular recognition and ligand binding (small molecules, drugs, a...
Drugs are adaptive molecules. They realize this peculiarity by generating different ensembles of pro...
Artículo de publicación ISIThe three-dimensional quantitative structure-activity relationship (3D QS...
An intriguing question in 3D-QSAR lies on which conformation(s) to use when generating molecular des...
Computational chemistry allows us to define and compute ad hoc theoretical reactivity and size-shape...
International audienceThe quantitative structure activity relationship (QSAR) methodology has been d...
Prediction of chemical bioactivity and physical properties has been one of the most important applic...
During the practice of chemoinformatics, it has been realized that molecular diversity is an essenti...
In this article, we review some recent (covering approximately the last four years) applications of ...
A basic problem in QSAR modeling is how to obtain proper molecular conformations to generate descrip...
In this paper, we report the first study aimed at correlating pharmacological properties with molecu...
Drug affinity and function depend on the different protonation species (present in the biological co...
The elucidation of a set of chemical/physical properties modulating the relationship between the che...
The comparative use of classical, quantum chemical (QC) ligand-based (LB) and structure-based (SB) q...
Abstract Two dynamic techniques recently developed to account for conformational flexibility of chem...
The correct chemical approach to molecular recognition and ligand binding (small molecules, drugs, a...
Drugs are adaptive molecules. They realize this peculiarity by generating different ensembles of pro...
Artículo de publicación ISIThe three-dimensional quantitative structure-activity relationship (3D QS...
An intriguing question in 3D-QSAR lies on which conformation(s) to use when generating molecular des...
Computational chemistry allows us to define and compute ad hoc theoretical reactivity and size-shape...
International audienceThe quantitative structure activity relationship (QSAR) methodology has been d...
Prediction of chemical bioactivity and physical properties has been one of the most important applic...
During the practice of chemoinformatics, it has been realized that molecular diversity is an essenti...
In this article, we review some recent (covering approximately the last four years) applications of ...
A basic problem in QSAR modeling is how to obtain proper molecular conformations to generate descrip...
In this paper, we report the first study aimed at correlating pharmacological properties with molecu...