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Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein

Electrostatic self-assembly was used to fabricate new smart multi-layer coatings, using a recombinant elastin-like polymer (ELP) and chitosan as the counterion macromolecule. The ELP was bioproduced, purified and its purity and expected molecular weight were assessed. Aggregate size measurements, ob...

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Detalles Bibliográficos
Autores principales: Barbosa, JS, Costa, RR, Testera, AM, Alonso, M, Rodríguez-Cabello, JC, Mano, JF
Formato: Texto
Lenguaje:English
Publicado: Springer 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2894142/
https://www.ncbi.nlm.nih.gov/pubmed/20596391
http://dx.doi.org/10.1007/s11671-009-9388-5
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author Barbosa, JS
Costa, RR
Testera, AM
Alonso, M
Rodríguez-Cabello, JC
Mano, JF
author_facet Barbosa, JS
Costa, RR
Testera, AM
Alonso, M
Rodríguez-Cabello, JC
Mano, JF
author_sort Barbosa, JS
collection PubMed
description Electrostatic self-assembly was used to fabricate new smart multi-layer coatings, using a recombinant elastin-like polymer (ELP) and chitosan as the counterion macromolecule. The ELP was bioproduced, purified and its purity and expected molecular weight were assessed. Aggregate size measurements, obtained by light scattering of dissolved ELP, were performed as a function of temperature and pH to assess the smart properties of the polymer. The build-up of multi-layered films containing ELP and chitosan, using a layer-by-layer methodology, was followed by quartz-crystal microbalance with dissipation monitoring. Atomic force microscopy analysis permitted to demonstrate that the topography of the multi-layered films could respond to temperature. This work opens new possibilities for the use of ELPs in the fabrication of biodegradable smart coatings and films, offering new platforms in biotechnology and in the biomedical area.
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spelling pubmed-28941422010-06-30 Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein Barbosa, JS Costa, RR Testera, AM Alonso, M Rodríguez-Cabello, JC Mano, JF Nanoscale Res Lett Nano Perspectives Electrostatic self-assembly was used to fabricate new smart multi-layer coatings, using a recombinant elastin-like polymer (ELP) and chitosan as the counterion macromolecule. The ELP was bioproduced, purified and its purity and expected molecular weight were assessed. Aggregate size measurements, obtained by light scattering of dissolved ELP, were performed as a function of temperature and pH to assess the smart properties of the polymer. The build-up of multi-layered films containing ELP and chitosan, using a layer-by-layer methodology, was followed by quartz-crystal microbalance with dissipation monitoring. Atomic force microscopy analysis permitted to demonstrate that the topography of the multi-layered films could respond to temperature. This work opens new possibilities for the use of ELPs in the fabrication of biodegradable smart coatings and films, offering new platforms in biotechnology and in the biomedical area. Springer 2009-07-16 /pmc/articles/PMC2894142/ /pubmed/20596391 http://dx.doi.org/10.1007/s11671-009-9388-5 Text en Copyright ©2009 to the authors
spellingShingle Nano Perspectives
Barbosa, JS
Costa, RR
Testera, AM
Alonso, M
Rodríguez-Cabello, JC
Mano, JF
Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title_full Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title_fullStr Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title_full_unstemmed Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title_short Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein
title_sort multi-layered films containing a biomimetic stimuli-responsive recombinant protein
topic Nano Perspectives
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2894142/
https://www.ncbi.nlm.nih.gov/pubmed/20596391
http://dx.doi.org/10.1007/s11671-009-9388-5
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