Cargando…

Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling

In this study, (125)I-radiolabelling was explored to follow the kinetics and isotherm of fibronectin (FN) adsorption to porous polymeric scaffolds, as well as to assess the elution and exchangeability of pre-adsorbed FN following incubation in serum-containing culture medium. Chitosan (CH) porous sc...

Descripción completa

Detalles Bibliográficos
Autores principales: Amaral, Isabel F., Sousa, Susana R., Neiva, Ismael, Marcos-Silva, Lara, Kirkpatrick, Charles J., Barbosa, Mário A., Pêgo, Ana P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749804/
https://www.ncbi.nlm.nih.gov/pubmed/23635535
http://dx.doi.org/10.4161/biom.24791
_version_ 1782477038662189056
author Amaral, Isabel F.
Sousa, Susana R.
Neiva, Ismael
Marcos-Silva, Lara
Kirkpatrick, Charles J.
Barbosa, Mário A.
Pêgo, Ana P.
author_facet Amaral, Isabel F.
Sousa, Susana R.
Neiva, Ismael
Marcos-Silva, Lara
Kirkpatrick, Charles J.
Barbosa, Mário A.
Pêgo, Ana P.
author_sort Amaral, Isabel F.
collection PubMed
description In this study, (125)I-radiolabelling was explored to follow the kinetics and isotherm of fibronectin (FN) adsorption to porous polymeric scaffolds, as well as to assess the elution and exchangeability of pre-adsorbed FN following incubation in serum-containing culture medium. Chitosan (CH) porous scaffolds with two different degrees of acetylation (DA 4% and 15%) were incubated in FN solutions with concentrations ranging from 5 to 50 µg/mL. The kinetic and isotherm of FN adsorption to CH were successfully followed using (125)I-FN as a tracer molecule. While on DA 4% the levels of adsorbed FN increased linearly with FN solution concentration, on DA 15% a saturation plateau was attained, and FN adsorbed amounts were significantly lower. These findings were supported by immunofluorescent studies that revealed, for the same FN solution concentration, higher levels of exposed cell-binding domains on DA 4% as compared with DA 15%. Following incubation in serum containing medium, DA 4% also revealed higher ability to exchange pre-adsorbed FN by new FN molecules from serum than DA 15%. In accordance, when assessing the efficacy of passively adsorbed FN to promote endothelial cell (EC) adhesion to CH, ECs were found to adhere at higher levels to DA 4% as compared with DA 15%, 5 µg/mL of FN being already efficient in promoting cell adhesion and cytoskeletal organization on CH with DA 4%. Taken together the results show that protein radiolabelling can be used as an effective tool to study protein adsorption to porous polymeric scaffolds, both from single and complex protein solutions.
format Online
Article
Text
id pubmed-3749804
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Landes Bioscience
record_format MEDLINE/PubMed
spelling pubmed-37498042013-08-29 Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling Amaral, Isabel F. Sousa, Susana R. Neiva, Ismael Marcos-Silva, Lara Kirkpatrick, Charles J. Barbosa, Mário A. Pêgo, Ana P. Biomatter Report In this study, (125)I-radiolabelling was explored to follow the kinetics and isotherm of fibronectin (FN) adsorption to porous polymeric scaffolds, as well as to assess the elution and exchangeability of pre-adsorbed FN following incubation in serum-containing culture medium. Chitosan (CH) porous scaffolds with two different degrees of acetylation (DA 4% and 15%) were incubated in FN solutions with concentrations ranging from 5 to 50 µg/mL. The kinetic and isotherm of FN adsorption to CH were successfully followed using (125)I-FN as a tracer molecule. While on DA 4% the levels of adsorbed FN increased linearly with FN solution concentration, on DA 15% a saturation plateau was attained, and FN adsorbed amounts were significantly lower. These findings were supported by immunofluorescent studies that revealed, for the same FN solution concentration, higher levels of exposed cell-binding domains on DA 4% as compared with DA 15%. Following incubation in serum containing medium, DA 4% also revealed higher ability to exchange pre-adsorbed FN by new FN molecules from serum than DA 15%. In accordance, when assessing the efficacy of passively adsorbed FN to promote endothelial cell (EC) adhesion to CH, ECs were found to adhere at higher levels to DA 4% as compared with DA 15%, 5 µg/mL of FN being already efficient in promoting cell adhesion and cytoskeletal organization on CH with DA 4%. Taken together the results show that protein radiolabelling can be used as an effective tool to study protein adsorption to porous polymeric scaffolds, both from single and complex protein solutions. Landes Bioscience 2013-04-01 2013-04-29 /pmc/articles/PMC3749804/ /pubmed/23635535 http://dx.doi.org/10.4161/biom.24791 Text en Copyright © 2013 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Amaral, Isabel F.
Sousa, Susana R.
Neiva, Ismael
Marcos-Silva, Lara
Kirkpatrick, Charles J.
Barbosa, Mário A.
Pêgo, Ana P.
Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title_full Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title_fullStr Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title_full_unstemmed Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title_short Kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)I-radiolabelling
title_sort kinetics and isotherm of fibronectin adsorption to three-dimensional porous chitosan scaffolds explored by (125)i-radiolabelling
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749804/
https://www.ncbi.nlm.nih.gov/pubmed/23635535
http://dx.doi.org/10.4161/biom.24791
work_keys_str_mv AT amaralisabelf kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT sousasusanar kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT neivaismael kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT marcossilvalara kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT kirkpatrickcharlesj kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT barbosamarioa kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling
AT pegoanap kineticsandisothermoffibronectinadsorptiontothreedimensionalporouschitosanscaffoldsexploredby125iradiolabelling