Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li… - Proceedings of the …, 2005 - National Acad Sciences
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

Cationic liposome-microtubule complexes: pathways to the formation of two-state lipid-protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li… - Proceedings of the …, 2005 - pubmed.ncbi.nlm.nih.gov
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

[HTML][HTML] Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller… - Proceedings of the …, 2005 - ncbi.nlm.nih.gov
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller… - Proceedings of the …, 2005 - cir.nii.ac.jp
抄録< jats: p> Intermolecular interactions between charged membranes and biological
polyelectrolytes, tuned by physical parameters, which include the membrane charge density …

[PDF][PDF] Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller… - …, 2005 - needleman.seas.harvard.edu
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

[PDF][PDF] Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller, L Wilson… - PNAS, 2005 - researchgate.net
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

Cationic liposome-microtubule complexes: Pathways to the formation of two-state lipid-protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li… - Proceedings of the …, 2005 - ui.adsabs.harvard.edu
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

[PDF][PDF] Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller… - …, 2005 - biophys.w3.kanazawa-u.ac.jp
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

Cationic Liposome-Microtubule Complexes: Pathways to the Formation of Two-State Lipid-Protein Nanotubes with Open or Closed Ends

U Raviv, DJ Needleman, Y Li, HP Miller, L Wilson… - Proceedings of the …, 2005 - JSTOR
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …

[PDF][PDF] Cationic liposome–microtubule complexes: Pathways to the formation of two-state lipid–protein nanotubes with open or closed ends

U Raviv, DJ Needleman, Y Li, HP Miller, L Wilson… - PNAS, 2005 - scholar.harvard.edu
Intermolecular interactions between charged membranes and biological polyelectrolytes,
tuned by physical parameters, which include the membrane charge density and bending …