Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography
Membrane shape is a key feature of many cellular processes, including cell differentiation, division, migration, and trafficking. The development of nanostructured surfaces allowing for the in situ manipulation of membranes in living cells is crucial to understand these processes, but this requires...
| Autores: | , , , , , , , , , , , , |
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| Tipo de recurso: | artículo |
| Estado: | Versión aceptada para publicación |
| Fecha de publicación: | 2020 |
| País: | España |
| Institución: | Consejo Superior de Investigaciones Científicas (CSIC) |
| Repositorio: | DIGITAL.CSIC. Repositorio Institucional del CSIC |
| OAI Identifier: | oai:digital.csic.es:10261/338187 |
| Acceso en línea: | http://hdl.handle.net/10261/338187 https://api.elsevier.com/content/abstract/scopus_id/85087631327 |
| Access Level: | acceso abierto |
| Palabra clave: | Biointerfaces Cellular membranes Microscopy Nanostructured materials Proteins ddc:540 |
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Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint LithographySansen, T.Sánchez-Fuentes, D.Rathar, R.Colom-Diego, A.El Alaoui, F.Viaud, J.Macchione, M.De Rossi, S.Matile, StefanGaudin, R.Bäcker, V.Carretero-Genevrier, A.Picas, L.BiointerfacesCellular membranesMicroscopyNanostructured materialsProteinsddc:540Membrane shape is a key feature of many cellular processes, including cell differentiation, division, migration, and trafficking. The development of nanostructured surfaces allowing for the in situ manipulation of membranes in living cells is crucial to understand these processes, but this requires complicated and limited-access technologies. Here, we investigate the self-organization of cellular membranes by using a customizable and benchtop method allowing one to engineer 1D SiO2 nanopillar arrays of defined sizes and shapes on high-performance glass compatible with advanced microscopies. As a result of this original combination, we provide a mapping of the morphology-induced modulation of the cell membrane mechanics, dynamics and steady-state organization of key protein complexes implicated in cellular trafficking and signal transduction.L.P. acknowledges the ATIP-Avenir program for financial support. A.C.-G. acknowledges the financial support from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program (Grant No. 803004) and the French Agence Nationale de la Recherche (ANR), Project Q-NOSS ANR ANR-16-CE09-0006-01.Peer reviewedAmerican Chemical SocietyInstitut National de la Santé et de la Recherche Médicale (France)European CommissionAgence Nationale de la Recherche (France)Matile, Stefan [0000-0002-8537-8349]Carretero-Genevrier, A. [0000-0003-0488-9452]Picas, L. [0000-0002-5619-5228]Consejo Superior de Investigaciones Científicas [https://ror.org/02gfc7t72]202320232020info:eu-repo/semantics/articlehttp://purl.org/coar/resource_type/c_6501Postprintinfo:eu-repo/semantics/acceptedVersionapplication/pdfhttp://hdl.handle.net/10261/338187https://api.elsevier.com/content/abstract/scopus_id/85087631327reponame:DIGITAL.CSIC. Repositorio Institucional del CSICinstname:Consejo Superior de Investigaciones Científicas (CSIC)Inglés#PLACEHOLDER_PARENT_METADATA_VALUE#info:eu-repo/grantAgreement/803004//https://doi.org/10.1021/acsami.0c05432Síinfo:eu-repo/semantics/openAccessoai:digital.csic.es:10261/3381872026-05-22T06:33:51Z |
| dc.title.none.fl_str_mv |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| title |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| spellingShingle |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography Sansen, T. Biointerfaces Cellular membranes Microscopy Nanostructured materials Proteins ddc:540 |
| title_short |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| title_full |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| title_fullStr |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| title_full_unstemmed |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| title_sort |
Mapping Cell Membrane Organization and Dynamics Using Soft Nanoimprint Lithography |
| dc.creator.none.fl_str_mv |
Sansen, T. Sánchez-Fuentes, D. Rathar, R. Colom-Diego, A. El Alaoui, F. Viaud, J. Macchione, M. De Rossi, S. Matile, Stefan Gaudin, R. Bäcker, V. Carretero-Genevrier, A. Picas, L. |
| author |
Sansen, T. |
| author_facet |
Sansen, T. Sánchez-Fuentes, D. Rathar, R. Colom-Diego, A. El Alaoui, F. Viaud, J. Macchione, M. De Rossi, S. Matile, Stefan Gaudin, R. Bäcker, V. Carretero-Genevrier, A. Picas, L. |
| author_role |
author |
| author2 |
Sánchez-Fuentes, D. Rathar, R. Colom-Diego, A. El Alaoui, F. Viaud, J. Macchione, M. De Rossi, S. Matile, Stefan Gaudin, R. Bäcker, V. Carretero-Genevrier, A. Picas, L. |
| author2_role |
author author author author author author author author author author author author |
| dc.contributor.none.fl_str_mv |
Institut National de la Santé et de la Recherche Médicale (France) European Commission Agence Nationale de la Recherche (France) Matile, Stefan [0000-0002-8537-8349] Carretero-Genevrier, A. [0000-0003-0488-9452] Picas, L. [0000-0002-5619-5228] Consejo Superior de Investigaciones Científicas [https://ror.org/02gfc7t72] |
| dc.subject.none.fl_str_mv |
Biointerfaces Cellular membranes Microscopy Nanostructured materials Proteins ddc:540 |
| topic |
Biointerfaces Cellular membranes Microscopy Nanostructured materials Proteins ddc:540 |
| description |
Membrane shape is a key feature of many cellular processes, including cell differentiation, division, migration, and trafficking. The development of nanostructured surfaces allowing for the in situ manipulation of membranes in living cells is crucial to understand these processes, but this requires complicated and limited-access technologies. Here, we investigate the self-organization of cellular membranes by using a customizable and benchtop method allowing one to engineer 1D SiO2 nanopillar arrays of defined sizes and shapes on high-performance glass compatible with advanced microscopies. As a result of this original combination, we provide a mapping of the morphology-induced modulation of the cell membrane mechanics, dynamics and steady-state organization of key protein complexes implicated in cellular trafficking and signal transduction. |
| publishDate |
2020 |
| dc.date.none.fl_str_mv |
2020 2023 2023 |
| dc.type.none.fl_str_mv |
info:eu-repo/semantics/article http://purl.org/coar/resource_type/c_6501 Postprint info:eu-repo/semantics/acceptedVersion |
| format |
article |
| status_str |
acceptedVersion |
| dc.identifier.none.fl_str_mv |
http://hdl.handle.net/10261/338187 https://api.elsevier.com/content/abstract/scopus_id/85087631327 |
| url |
http://hdl.handle.net/10261/338187 https://api.elsevier.com/content/abstract/scopus_id/85087631327 |
| dc.language.none.fl_str_mv |
Inglés |
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Inglés |
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#PLACEHOLDER_PARENT_METADATA_VALUE# info:eu-repo/grantAgreement/803004// https://doi.org/10.1021/acsami.0c05432 Sí |
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info:eu-repo/semantics/openAccess |
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openAccess |
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application/pdf |
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American Chemical Society |
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American Chemical Society |
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reponame:DIGITAL.CSIC. Repositorio Institucional del CSIC instname:Consejo Superior de Investigaciones Científicas (CSIC) |
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Consejo Superior de Investigaciones Científicas (CSIC) |
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DIGITAL.CSIC. Repositorio Institucional del CSIC |
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