Virtual screening through molecular docking can be translated into an optimization problem, which can be tackled with metaheuristic methods. The interaction between two chemical compounds (typically a protein, enzyme or receptor, and a small molecule, or ligand) is calculated by using highly computationally demanding scoring functions that are computed at several binding spots located throughout the protein surface. This paper introduces METADOCK, a novel molecular docking methodology based on parameterized and parallel metaheuristics and designed to leverage heterogeneous computers based on heterogeneous architectures. The application decides the optimization technique at running time by setting a configuration schema. Our proposed solutio...
In this work we announce and evaluate a high throughput virtual screening pipeline for <i>in-silico<...
Virtual screening is one of the early stages that aims to select a set of promising ligands from a ...
Nwat-MMGBSA is a variant of MM-PB/GBSA based on the inclusion of a number of explicit water molecule...
Virtual screening through molecular docking can be translated into an optimization problem, which ca...
Finding a novel drug is a very long and complex procedure. Using computer simulations, it is possibl...
Computational modeling of drug binding to proteins is an integral component of direct drug design. P...
© 2016 Fang et al. This is an open access article distributed under the terms of the Creative Common...
Virtual high-throughput screening (vHTS) is an invaluable method in modern drug discovery. It permit...
Molecular docking is a computational technique which predicts the binding energy and the preferred b...
Molecular docking is a computational procedure that attempts to efficiently predict non-covalent bin...
Large-scale computing technologies have enabled high-throughput virtual screening involving thousand...
Drug discovery is the most expensive, time-demanding, and challenging project in biopharmaceutical c...
In recent years, the potential benefits of high-throughput virtual screening to the drug discovery c...
Virtual screening (VS) is a computational strategy that uses in silico automated protein docking int...
Molecular Docking (MD) is a key tool in computer-aided drug design that aims to predict the binding ...
In this work we announce and evaluate a high throughput virtual screening pipeline for <i>in-silico<...
Virtual screening is one of the early stages that aims to select a set of promising ligands from a ...
Nwat-MMGBSA is a variant of MM-PB/GBSA based on the inclusion of a number of explicit water molecule...
Virtual screening through molecular docking can be translated into an optimization problem, which ca...
Finding a novel drug is a very long and complex procedure. Using computer simulations, it is possibl...
Computational modeling of drug binding to proteins is an integral component of direct drug design. P...
© 2016 Fang et al. This is an open access article distributed under the terms of the Creative Common...
Virtual high-throughput screening (vHTS) is an invaluable method in modern drug discovery. It permit...
Molecular docking is a computational technique which predicts the binding energy and the preferred b...
Molecular docking is a computational procedure that attempts to efficiently predict non-covalent bin...
Large-scale computing technologies have enabled high-throughput virtual screening involving thousand...
Drug discovery is the most expensive, time-demanding, and challenging project in biopharmaceutical c...
In recent years, the potential benefits of high-throughput virtual screening to the drug discovery c...
Virtual screening (VS) is a computational strategy that uses in silico automated protein docking int...
Molecular Docking (MD) is a key tool in computer-aided drug design that aims to predict the binding ...
In this work we announce and evaluate a high throughput virtual screening pipeline for <i>in-silico<...
Virtual screening is one of the early stages that aims to select a set of promising ligands from a ...
Nwat-MMGBSA is a variant of MM-PB/GBSA based on the inclusion of a number of explicit water molecule...