Computational prediction of membrane permeability to small molecules requires accurate description of both the thermodynamics and kinetics underlying translocation across the lipid bilayer. In this contribution, well-converged, microsecond-long free-energy calculations are combined with a recently developed subdiffusive kinetics framework to describe the membrane permeation of a homologous series of short-tail alcohols, from methanol to 1-butanol, with unprecedented fidelity to the underlying molecular models. While the free-energy profiles exhibit barriers for passage through the center of the bilayer in all cases, the height of these barriers decreases with the length of the aliphatic chain of the alcohol, in quantitative agreement with e...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...
Permeation of many small molecules through lipid bilayers can be directly observed in molecular dyna...
We have combined experiments with atomic-scale molecular dynamics simulations to consider the influe...
Determination of membrane permeability to small molecules from first-principles represents a promisi...
Accurate calculation of permeabilities from first-principles has been a long-standing challenge for ...
Citation: Chipot, C. and Comer, J. Subdiffusion in Membrane Permeation of Small Molecules. Sci. Rep....
AbstractWe used micropipette aspiration to directly measure the area compressibility modulus, bendin...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
AbstractCell membrane permeation is required for most drugs to reach their biological target, and un...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
The transmembrane permeation of eight small (molecular weight <100) organic molecules across a ph...
Understanding how different classes of molecules move across biological membranes is a prerequisite ...
Two experimental techniques have been utilized to explore the barrier properties of lecithin/decane ...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...
Permeation of many small molecules through lipid bilayers can be directly observed in molecular dyna...
We have combined experiments with atomic-scale molecular dynamics simulations to consider the influe...
Determination of membrane permeability to small molecules from first-principles represents a promisi...
Accurate calculation of permeabilities from first-principles has been a long-standing challenge for ...
Citation: Chipot, C. and Comer, J. Subdiffusion in Membrane Permeation of Small Molecules. Sci. Rep....
AbstractWe used micropipette aspiration to directly measure the area compressibility modulus, bendin...
To reach their biological target, drugs have to cross cell membranes, and understanding passive memb...
AbstractCell membrane permeation is required for most drugs to reach their biological target, and un...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
The spontaneous diffusion of solutes through lipid bilayers is still a challenge for theoretical pre...
The transmembrane permeation of eight small (molecular weight <100) organic molecules across a ph...
Understanding how different classes of molecules move across biological membranes is a prerequisite ...
Two experimental techniques have been utilized to explore the barrier properties of lecithin/decane ...
The transport of small molecules across a phospholipid membrane is studied by molecular dynamics sim...
Permeation of many small molecules through lipid bilayers can be directly observed in molecular dyna...
We have combined experiments with atomic-scale molecular dynamics simulations to consider the influe...