Computational techniques have been applied in the drug discovery pipeline since the 1980s. Given the low computational resources of the time, the first molecular modeling strategies relied on a rigid view of the ligand-target binding process. During the years, the evolution of hardware technologies has gradually allowed simulating the dynamic nature of the binding event. In this work, we present an overview of the evolution of structure-based drug discovery techniques in the study of ligand-target recognition phenomenon, going from the static molecular docking toward enhanced molecular dynamics strategies
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Ligand-protein binding models have experienced an evolution during time: from the lock-key model to ...
Computational techniques have been applied in the drug discovery pipeline since the 1980s. Given the...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular dynamics (MD) and related methods are close to becoming routine computational tools for dr...
Molecular dynamics (MD) and related methods are close to becoming routine computational tools for dr...
Molecular docking is an established in silico structure-based method widely used in drug discovery. ...
Molecular docking is an established in silico structure-based method widely used in drug discovery. ...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Molecular dynamics simulations have been successfully incorporated and evolved into a mature techniq...
A rational approach is needed to maximize the chances of finding new drugs, and to exploit the oppor...
Molecular dynamics simulations have been successfully incorporated and evolved into a mature techniq...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Ligand-protein binding models have experienced an evolution during time: from the lock-key model to ...
Computational techniques have been applied in the drug discovery pipeline since the 1980s. Given the...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Molecular dynamics (MD) and related methods are close to becoming routine computational tools for dr...
Molecular dynamics (MD) and related methods are close to becoming routine computational tools for dr...
Molecular docking is an established in silico structure-based method widely used in drug discovery. ...
Molecular docking is an established in silico structure-based method widely used in drug discovery. ...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Molecular dynamics simulations have been successfully incorporated and evolved into a mature techniq...
A rational approach is needed to maximize the chances of finding new drugs, and to exploit the oppor...
Molecular dynamics simulations have been successfully incorporated and evolved into a mature techniq...
Recent years have witnessed rapid developments of computer-aided drug design methods, which have rea...
Molecular docking is the methodology of choice for studying in silico protein-ligand binding and for...
Ligand-protein binding models have experienced an evolution during time: from the lock-key model to ...