Biological membranes are versatile in composition and host intriguing molecular processes. In order to be able to study these systems, an accurate model Hamiltonian or force field (FF) is a necessity. Here, we report the results of our extension of earlier developed all-atomistic FF parameters for fully saturated phospholipids that complements an earlier parameter set for saturated phosphatidylcholine lipids (J. Phys. Chem. B, 2012, 116, 3164-3179). The FF, coined Slipids (Stockholm lipids), now also includes parameters for unsaturated phosphatidylcholine and phosphatidylethanolamine lipids, e.g., POPC, DOPC, SOPC, POPE, and DOPE. As the extended set of parameters is derived with the same philosophy as previously applied, the resulting FF h...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
In this article, a new set of parameters compatible with the dissipative particle dynamics (DPD) for...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
Molecular modeling has come a long way during the past decades and in the current thesis modeling of...
To be able to model complex biological membranes in a more realistic manner, the force field Slipids...
The all-atomic force field Slipids (Stockholm Lipids) for lipid bilayers simulations has been extend...
AbstractA recently defined charge set, to be used in conjunction with the all-atom CHARMM27r force f...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
In this article, a new set of parameters compatible with the dissipative particle dynamics (DPD) for...
Biological membranes are versatile in composition and host intriguing molecular processes. In order ...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
Biological membranes are versatile in composition and host intriguing molecular processes. In order...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
An all-atomistic force field (FF) has been developed for fully saturated phospholipids. The parametr...
Molecular modeling has come a long way during the past decades and in the current thesis modeling of...
To be able to model complex biological membranes in a more realistic manner, the force field Slipids...
The all-atomic force field Slipids (Stockholm Lipids) for lipid bilayers simulations has been extend...
AbstractA recently defined charge set, to be used in conjunction with the all-atom CHARMM27r force f...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
The Transferable Potentials for Phase Equilibria (TraPPE) is extended to zwitterionic and charged li...
In this article, a new set of parameters compatible with the dissipative particle dynamics (DPD) for...