Simulation techniques play an ever increasing role in drug design by providing an atomistic view of the pathways of drugs to their target sites, thus revealing the determinants behind molecular recognition and binding, pinpointing local and allosteric conformational changes of both drugs and receptors, and unveiling key chemical mechanisms in enzymatic-like processes. In particular, molecular dynamics simulations, relying on a force field, quantum mechanical, or hybrid description of the system, have been largely employed to unveil mechanistic, kinetic, and thermodynamic aspects of the binding of anticancer drugs to DNA, ultimately contributing to a better understanding of their mechanism of action. Herein we review recent literature, focus...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
The binding of small molecules with biological targets is associated to interesting chemical and bio...
Computer simulations have become a widely used and powerful tool to study the behaviour of many-part...
Simulation techniques play an ever increasing role in drug design by providing an atomistic view of ...
The development of anticancer drugs started over four decades ago, with the serendipitous discovery ...
AbstractComputer simulations have been demonstrated to be important for unraveling atomic mechanisms...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
AbstractComputer simulations have been demonstrated to be important for unraveling atomic mechanisms...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
This article describes how classical molecular simulation methods are being used to gain a molecular...
This article describes how classical molecular simulation methods are being used to gain a molecular...
The rising resistance and the severe side effects associated with classical anticancer drugs such as...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
The binding of small molecules with biological targets is associated to interesting chemical and bio...
Computer simulations have become a widely used and powerful tool to study the behaviour of many-part...
Simulation techniques play an ever increasing role in drug design by providing an atomistic view of ...
The development of anticancer drugs started over four decades ago, with the serendipitous discovery ...
AbstractComputer simulations have been demonstrated to be important for unraveling atomic mechanisms...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
AbstractComputer simulations have been demonstrated to be important for unraveling atomic mechanisms...
Many transition metal complexes have unique physicochemical properties that can be efficiently explo...
This article describes how classical molecular simulation methods are being used to gain a molecular...
This article describes how classical molecular simulation methods are being used to gain a molecular...
The rising resistance and the severe side effects associated with classical anticancer drugs such as...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
Biomolecular simulation is increasingly central to understanding and designing biological molecules ...
The binding of small molecules with biological targets is associated to interesting chemical and bio...
Computer simulations have become a widely used and powerful tool to study the behaviour of many-part...