High-performance computing (HPC) has become a state strategic technology in a number of countries. One hypothesis is that HPC can accelerate biopharmaceutical innovation. Our experimental data demonstrate that HPC can significantly accelerate biopharmaceutical innovation by employing molecular dynamics-based virtual screening (MDVS). Without using HPC, MDVS for a 10K compound library with tens of nanoseconds of MD simulations requires years of computer time. In contrast, a state of the art HPC can be 600 times faster than an eight-core PC server is in screening a typical drug target (which contains about 40K atoms). Also, careful design of the GPU/CPU architecture can reduce the HPC costs. However, the communication cost of parallel computi...
Virtual Sreening (VS) is an in silico technique for drug discovery. An overview of VS methods is gi...
The social and economic impact of the COVID-19 pandemic demands a reduction of the time required to ...
Molecular dynamics simulations and the generation of ad hoc chemical libraries are playing an increa...
High-performance computing (HPC) has become a state strategic technology in a number of countries. O...
Finding a novel drug is a very long and complex procedure. Using computer simulations, it is possibl...
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 my dissertation, we evaluate the current landscape of computation, using as a case study a high-i...
Molecular dynamics simulations hold the promise to be an important tool for biological research and ...
Introduction: Computational chemistry dramatically accelerates the drug discovery process and high-p...
Computers are routinely used in the modern drug discovery process. In virtual screening, the bioacti...
Computational modeling of drug binding to proteins is an integral component of direct drug design. P...
Molecular dynamics (MD) is a powerful computer simulation technique providing atomistic resolution a...
The ever-increasing amount of computational power available has made it possible to use docking prog...
Virtual screening is one of the early stages that aims to select a set of promising ligands from a ...
Virtual Sreening (VS) is an in silico technique for drug discovery. An overview of VS methods is gi...
The social and economic impact of the COVID-19 pandemic demands a reduction of the time required to ...
Molecular dynamics simulations and the generation of ad hoc chemical libraries are playing an increa...
High-performance computing (HPC) has become a state strategic technology in a number of countries. O...
Finding a novel drug is a very long and complex procedure. Using computer simulations, it is possibl...
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 my dissertation, we evaluate the current landscape of computation, using as a case study a high-i...
Molecular dynamics simulations hold the promise to be an important tool for biological research and ...
Introduction: Computational chemistry dramatically accelerates the drug discovery process and high-p...
Computers are routinely used in the modern drug discovery process. In virtual screening, the bioacti...
Computational modeling of drug binding to proteins is an integral component of direct drug design. P...
Molecular dynamics (MD) is a powerful computer simulation technique providing atomistic resolution a...
The ever-increasing amount of computational power available has made it possible to use docking prog...
Virtual screening is one of the early stages that aims to select a set of promising ligands from a ...
Virtual Sreening (VS) is an in silico technique for drug discovery. An overview of VS methods is gi...
The social and economic impact of the COVID-19 pandemic demands a reduction of the time required to ...
Molecular dynamics simulations and the generation of ad hoc chemical libraries are playing an increa...