Predicting the permeability coefficient (<i>P</i>) of drugs permeating through the cell membrane is of paramount importance in drug discovery. We here propose an approach for calculating <i>P</i> based on bias-exchange metadynamics. The approach allows constructing from atomistic simulations a model of permeation taking explicitly into account not only the “trivial” reaction coordinate, the position of the drug along the direction normal to the lipid membrane plane, but also other degrees of freedom, for example, the torsional angles of the permeating molecule, or variables describing its solvation/desolvation. This allows deriving an accurate picture of the permeation process, and constructing a detailed molecular model of the transition s...
The unassisted permeation process of ?-blocker drugs (alprenolol, atenolol, pindolol) and steroid ho...
We present a simple approach to calculate the kinetic properties of lipid membrane crossing processe...
Understanding how different classes of molecules move across biological membranes is a prerequisite ...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
The ability of a drug to cross the intestine-blood barrier is a key quantity for drug design and emp...
Membrane permeability is a key property to consider during the drug design process, and particularly...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
Accurate calculation of permeabilities from first-principles has been a long-standing challenge for ...
A simple descriptor calculated from molecular dynamics simulations of the membrane partitioning even...
Predicting from first-principles the rate of passive permeation of small molecules across the biolog...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
Determination of membrane permeability to small molecules from first-principles represents a promisi...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
The unassisted permeation process of ?-blocker drugs (alprenolol, atenolol, pindolol) and steroid ho...
We present a simple approach to calculate the kinetic properties of lipid membrane crossing processe...
Understanding how different classes of molecules move across biological membranes is a prerequisite ...
Predicting the permeability coefficient (P) of drugs permeating through the cell membrane is of para...
The ability of a drug to cross the intestine-blood barrier is a key quantity for drug design and emp...
Membrane permeability is a key property to consider during the drug design process, and particularly...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
The biophysical basis of passive membrane permeability is well-understood, but most methods for pred...
Accurate calculation of permeabilities from first-principles has been a long-standing challenge for ...
A simple descriptor calculated from molecular dynamics simulations of the membrane partitioning even...
Predicting from first-principles the rate of passive permeation of small molecules across the biolog...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
Determination of membrane permeability to small molecules from first-principles represents a promisi...
AbstractTo reach their biological target, drugs have to cross cell membranes, and understanding pass...
The unassisted permeation process of ?-blocker drugs (alprenolol, atenolol, pindolol) and steroid ho...
We present a simple approach to calculate the kinetic properties of lipid membrane crossing processe...
Understanding how different classes of molecules move across biological membranes is a prerequisite ...