Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation of dipalmitoylphosphatidylcholine (DPPC) lipids into small unilamellar vesicles. We show that the aggregation process occurs on a nanosecond time scale, with bicelles and cuplike vesicles formed at intermediate stages. Formation of hemifused vesicles is also observed at higher lipid concentration. With either 25% dipalmitoylphosphatidylethanolamine (DPPE) or lysoPC mixed into the system, the final stages of the aggregation process occur significantly faster. The structure of the spontaneously formed vesicles is analyzed in detail. Microsecond simulations of isolated vesicles reveal significant differences in the packing of the lipids between...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
An essential step of nanoliposome formation in an aqueous lipid solution is the transition from disc...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
Here, we use coarse grained molecular dynamics (MD) simulations to study the spontaneous aggregation...
An essential step of nanoliposome formation in an aqueous lipid solution is the transition from disc...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
The fusion of a membrane-bounded vesicle with a target membrane is a key step in intracellular traff...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
At present very little is known about the kinetic barriers which a small vesicle will face during th...
Lipids are small amphiphatic molecules that can adopt a wide variety of aggregation states including...