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dc.contributor.author | Aznar Gimeno, Elena | es_ES |
dc.contributor.author | Mondragón Martínez, Laura | es_ES |
dc.contributor.author | Ros-Lis, José Vicente | es_ES |
dc.contributor.author | Sancenón Galarza, Félix | es_ES |
dc.contributor.author | Marcos Martínez, María Dolores | es_ES |
dc.contributor.author | Martínez Mañez, Ramón | es_ES |
dc.contributor.author | Soto Camino, Juan | es_ES |
dc.contributor.author | Pérez Payá, Enrique | es_ES |
dc.contributor.author | AMOROS DEL TORO, PEDRO | es_ES |
dc.date.accessioned | 2013-04-19T10:20:17Z | |
dc.date.issued | 2011-09-27 | |
dc.identifier.issn | 1433-7851 | |
dc.identifier.uri | http://hdl.handle.net/10251/28067 | |
dc.description.abstract | Trapped: Mesoporous silica nanoparticles were loaded with a fluorescent guest and functionalized with octadecyltrimethoxysilane. The alkyl chains interact with paraffins, which build a hydrophobic layer around the particle (see picture). Upon melting of the paraffin, the guest molecule is released, as demonstrated in cells for the guest doxorubicin. The release temperature can be tuned by choosing an appropriate paraffin. Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. | es_ES |
dc.description.sponsorship | Financial support from the Spanish Government (projects MAT2009-14564-C04-01 and SAF2010-15512) and the Generalitat Valenciana (projects PROMETEO/2009/016 and PROMETEO/2010/005) is gratefully acknowledged. L. M. thanks the Generalitat Valenciana for a VALi + d postdoctoral contract. We thank UPV electron microscopy and CIPF confocal microscopy services for technical support. | en_EN |
dc.language | Inglés | es_ES |
dc.publisher | Wiley-VCH Verlag | es_ES |
dc.relation.ispartof | Angewandte Chemie International Edition | es_ES |
dc.rights | Reserva de todos los derechos | es_ES |
dc.subject | Controlled release | es_ES |
dc.subject | Drug delivery | es_ES |
dc.subject | Mesoporous materials | es_ES |
dc.subject | Molecular gates | es_ES |
dc.subject | Nanoparticles | es_ES |
dc.subject | Alkyl chain | es_ES |
dc.subject | Doxorubicin | es_ES |
dc.subject | Functionalized | es_ES |
dc.subject | Guest molecules | es_ES |
dc.subject | Hydrophobic layers | es_ES |
dc.subject | Mesoporous | es_ES |
dc.subject | Mesoporous silica nanoparticles | es_ES |
dc.subject | Octadecyltrimethoxysilane | es_ES |
dc.subject | Drug interactions | es_ES |
dc.subject | Paraffin waxes | es_ES |
dc.subject | Paraffins | es_ES |
dc.subject | Silica | es_ES |
dc.subject | Antineoplastic agent | es_ES |
dc.subject | Drug carrier | es_ES |
dc.subject | Mcm 41 | es_ES |
dc.subject | MCM-41 | es_ES |
dc.subject | Nanoparticle | es_ES |
dc.subject | Paraffin | es_ES |
dc.subject | Phenazine derivative | es_ES |
dc.subject | Safranin t | es_ES |
dc.subject | Silicon dioxide | es_ES |
dc.subject | Article | es_ES |
dc.subject | Cell survival | es_ES |
dc.subject | Chemical structure | es_ES |
dc.subject | Chemistry | es_ES |
dc.subject | Confocal microscopy | es_ES |
dc.subject | Delayed release formulation | es_ES |
dc.subject | Drug effect | es_ES |
dc.subject | HeLa cell | es_ES |
dc.subject | Human | es_ES |
dc.subject | Porosity | es_ES |
dc.subject | Solubility | es_ES |
dc.subject | Surface property | es_ES |
dc.subject | Temperature | es_ES |
dc.subject | Transmission electron microscopy | es_ES |
dc.subject | X ray diffraction | es_ES |
dc.subject | Antineoplastic Agents | es_ES |
dc.subject | Delayed-Action Preparations | es_ES |
dc.subject | Drug Carriers | es_ES |
dc.subject | HeLa Cells | es_ES |
dc.subject | Humans | es_ES |
dc.subject | Microscopy, Confocal | es_ES |
dc.subject | Microscopy, Electron, Transmission | es_ES |
dc.subject | Models, Molecular | es_ES |
dc.subject | Molecular Structure | es_ES |
dc.subject | Phenazines | es_ES |
dc.subject | Surface Properties | es_ES |
dc.subject | X-Ray Diffraction | es_ES |
dc.subject.classification | INGENIERIA DE LA CONSTRUCCION | es_ES |
dc.subject.classification | QUIMICA INORGANICA | es_ES |
dc.subject.classification | QUIMICA ORGANICA | es_ES |
dc.title | Finely tuned temperature-controlled cargo release using paraffin-capped mesoporous silica nanoparticles | es_ES |
dc.type | Artículo | es_ES |
dc.embargo.lift | 10000-01-01 | |
dc.embargo.terms | forever | es_ES |
dc.identifier.doi | 10.1002/anie.201102756 | |
dc.relation.projectID | info:eu-repo/grantAgreement/MICINN//MAT2009-14564-C04-01/ES/Nanomateriales Hibridos Para El Desarrollo De \"Puertas Moleculares\" De Aplicacion En Procesos De Reconocimiento Y Terapeutica Y Para La Deteccion De Explosivos/ | es_ES |
dc.rights.accessRights | Abierto | es_ES |
dc.contributor.affiliation | Universitat Politècnica de València. Departamento de Química - Departament de Química | es_ES |
dc.contributor.affiliation | Universitat Politècnica de València. Instituto de Reconocimiento Molecular y Desarrollo Tecnológico - Institut de Reconeixement Molecular i Desenvolupament Tecnològic | es_ES |
dc.description.bibliographicCitation | Aznar Gimeno, E.; Mondragón Martínez, L.; Ros-Lis, JV.; Sancenón Galarza, F.; Marcos Martínez, MD.; Martínez Mañez, R.; Soto Camino, J.... (2011). Finely tuned temperature-controlled cargo release using paraffin-capped mesoporous silica nanoparticles. Angewandte Chemie International Edition. (50):11172-11175. https://doi.org/10.1002/anie.201102756 | es_ES |
dc.description.accrualMethod | S | es_ES |
dc.relation.publisherversion | http://onlinelibrary.wiley.com/doi/10.1002/anie.201102756/pdf | es_ES |
dc.description.upvformatpinicio | 11172 | es_ES |
dc.description.upvformatpfin | 11175 | es_ES |
dc.type.version | info:eu-repo/semantics/publishedVersion | es_ES |
dc.description.issue | 50 | es_ES |
dc.relation.senia | 206714 | |
dc.contributor.funder | Ministerio de Ciencia e Innovación | es_ES |
dc.contributor.funder | Generalitat Valenciana | es_ES |