Confined Bilayers Passively Regulate Shape and Stress
Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that...
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| Veröffentlicht in: | Physical review letters Jg. 110; H. 2; S. 028101 |
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11.01.2013
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| ISSN: | 0031-9007, 1079-7114, 1079-7114 |
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| Abstract | Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers. |
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| AbstractList | Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers.Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers. Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers. Peer Reviewed Lipid membranes are commonly confined to adjacent subcellular structures or to artificial substrates and particles. We develop an experimental and theoretical framework to investigate the mechanics of confined membranes, including the influence of adhesion, strain, and osmotic pressure. We find that supported lipid bilayers respond to stress by nucleating and evolving spherical and tubular protrusions. In cells, such transformations are generally attributed to proteins. Our results offer insights into the mechanics of cell membranes and can further extend the applications of supported bilayers. |
| ArticleNumber | 028101 |
| Author | Arroyo, Marino Stone, Howard A. Rahimi, Mohammad Staykova, Margarita |
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| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/23383939$$D View this record in MEDLINE/PubMed |
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| Cites_doi | 10.1007/s002320010040 10.1021/bm200266z 10.1103/PhysRevLett.98.018102 10.1038/nrm1437 10.1021/la700523x 10.1073/pnas.1102358108 10.1085/jgp.200709848 10.1529/biophysj.106.091702 10.1073/pnas.1015892108 10.1016/j.cell.2008.11.028 10.1007/3-540-49522-3 10.1021/la9903043 10.1021/la8033269 10.1103/PhysRevE.63.051911 10.1146/annurev-biochem-052809-155121 10.1016/j.bpj.2011.08.057 10.1038/nrm2453 10.1021/la026236t 10.1016/j.bpj.2010.07.031 10.1088/0953-8984/18/28/S04 10.1016/S0006-3495(00)76294-1 10.1038/nature04396 10.1103/PhysRevE.86.011932 |
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| SubjectTerms | 90 Operations research, mathematical programming 90B Operations research and management science 92 Biology and other natural sciences 92C Physiological, cellular and medical topics Biologia Biology Cell Adhesion - physiology Cell Membrane - chemistry Cell Membrane - physiology Classificació AMS Investigació operativa Lipid Bilayers - chemistry Matemàtica aplicada a les ciències Matemàtiques i estadística Models, Biological Models, Chemical Models, Theoretical Operations research Osmosis Programació matemàtica Thermodynamics Àrees temàtiques de la UPC |
| Title | Confined Bilayers Passively Regulate Shape and Stress |
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