Lipid freezing in dilute sonicated vesicular dispersions was studied using differential scanning calorimetry (DSC) and H-1 NMR. For charged, anionic, or cationic lipids, approximately half of the lipids remain in a fluid state when cooled 20 degrees C below the main chain melting temperature. With a zwitterionic phospholipid, on the other hand, essentially no supercooling of the liquid state was observed. The observations are analyzed in terms of the nucleation and growth of flat solid domains in originally fluid spherical vesicles. As the solid domains grow, the remaining fluid domain is deformed, resulting in a curvature stress. Depending on the vesicle size and the bilayer bending rigidity, the solid domain growth may terminate as the ga...
This study aims to explore the variety of previously unknown morphologies that brain lipids form in ...
he swelling behavior of charged phospholipids in pure water is completely different from that of neu...
AbstractThe swelling behavior of charged phospholipids in pure water is completely different from th...
ipid freezing in dilute sonicated vesicular dispersions was studied using differential scanning calo...
We have characterized the lipid chain freezing in dilute aqueous vesicle dispersions of the cationic...
AbstractDifferential scanning calorimetry (DSC) has been used to study the effects of repeated freez...
AbstractWe have examined the calorimetric behavior of large liposomes consisting of symmetric satura...
Dilute dispersions of the synthetic bilayer forming double-chained cationic lipid dioctadecyldimethy...
In spite of the large mean bending moduli observed for phospholipid bilayers, stable vesicle phases ...
Dilute dispersions of the synthetic bilayer forming double-chained cationic lipid dioctadecyldimethy...
AbstractThe influence of ionic strength and equilibration time on the appearance of the sub-main tra...
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...
The swelling behavior of charged phospholipids in pure water is completely different from that of ne...
Deuterium (2H) and phosphorus (31P) nuclear magnetic resonance (NMR) and freeze-fracture electron mi...
This study aims to explore the variety of previously unknown morphologies that brain lipids form in ...
he swelling behavior of charged phospholipids in pure water is completely different from that of neu...
AbstractThe swelling behavior of charged phospholipids in pure water is completely different from th...
ipid freezing in dilute sonicated vesicular dispersions was studied using differential scanning calo...
We have characterized the lipid chain freezing in dilute aqueous vesicle dispersions of the cationic...
AbstractDifferential scanning calorimetry (DSC) has been used to study the effects of repeated freez...
AbstractWe have examined the calorimetric behavior of large liposomes consisting of symmetric satura...
Dilute dispersions of the synthetic bilayer forming double-chained cationic lipid dioctadecyldimethy...
In spite of the large mean bending moduli observed for phospholipid bilayers, stable vesicle phases ...
Dilute dispersions of the synthetic bilayer forming double-chained cationic lipid dioctadecyldimethy...
AbstractThe influence of ionic strength and equilibration time on the appearance of the sub-main tra...
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...
The swelling behavior of charged phospholipids in pure water is completely different from that of ne...
Deuterium (2H) and phosphorus (31P) nuclear magnetic resonance (NMR) and freeze-fracture electron mi...
This study aims to explore the variety of previously unknown morphologies that brain lipids form in ...
he swelling behavior of charged phospholipids in pure water is completely different from that of neu...
AbstractThe swelling behavior of charged phospholipids in pure water is completely different from th...