Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova, A Sodt - Physical Review E, 2023 - APS
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

[HTML][HTML] Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova… - Physical review. E, 2023 - ncbi.nlm.nih.gov
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova, A Sodt - Physical Review E, 2023 - pure.mpg.de
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture.

K Sapp, M Aleksanyan, K Kerr, R Dimova… - Physical review. E, 2023 - europepmc.org
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr… - Physical review …, 2023 - pubmed.ncbi.nlm.nih.gov
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova, A Sodt - bioRxiv, 2022 - biorxiv.org
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova… - Physical Review …, 2023 - ui.adsabs.harvard.edu
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

[PDF][PDF] Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova… - PHYSICAL REVIEW E …, 2023 - mpikg.mpg.de
The cellular membrane is a complex mixture of many lipids and proteins, which may be
attached peripherally, reside in one leaflet, or cross both. Membrane shape is highly …

[PDF][PDF] Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture

K Sapp, M Aleksanyan, K Kerr, R Dimova, A Sodt - mpikg.mpg.de
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …

Kinetic relaxation of giant vesicles validates diffusional softening in a binary lipid mixture.

K Sapp, M Aleksanyan, K Kerr, R Dimova… - Physical review. E, 2023 - europepmc.org
The stiffness of biological membranes determines the work required by cellular machinery to
form and dismantle vesicles and other lipidic shapes. Model membrane stiffness can be …