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In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds

Recent advances in tissue engineering offer innovative clinical alternatives in dentistry and regenerative medicine. Tissue engineering combines human cells with compatible biomaterials to induce tissue regeneration. Shortening the fabrication time of biomaterials used in tissue engineering will con...

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Autores principales: Blanco-Elices, Cristina, España-Guerrero, Enrique, Mateu-Sanz, Miguel, Sánchez-Porras, David, García-García, Óscar Darío, Sánchez-Quevedo, María del Carmen, Fernández-Valadés, Ricardo, Alaminos, Miguel, Martín-Piedra, Miguel Ángel, Garzón, Ingrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178710/
https://www.ncbi.nlm.nih.gov/pubmed/32260417
http://dx.doi.org/10.3390/ma13071692
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author Blanco-Elices, Cristina
España-Guerrero, Enrique
Mateu-Sanz, Miguel
Sánchez-Porras, David
García-García, Óscar Darío
Sánchez-Quevedo, María del Carmen
Fernández-Valadés, Ricardo
Alaminos, Miguel
Martín-Piedra, Miguel Ángel
Garzón, Ingrid
author_facet Blanco-Elices, Cristina
España-Guerrero, Enrique
Mateu-Sanz, Miguel
Sánchez-Porras, David
García-García, Óscar Darío
Sánchez-Quevedo, María del Carmen
Fernández-Valadés, Ricardo
Alaminos, Miguel
Martín-Piedra, Miguel Ángel
Garzón, Ingrid
author_sort Blanco-Elices, Cristina
collection PubMed
description Recent advances in tissue engineering offer innovative clinical alternatives in dentistry and regenerative medicine. Tissue engineering combines human cells with compatible biomaterials to induce tissue regeneration. Shortening the fabrication time of biomaterials used in tissue engineering will contribute to treatment improvement, and biomaterial functionalization can be exploited to enhance scaffold properties. In this work, we have tested an alternative biofabrication method by directly including human oral mucosa tissue explants within the biomaterial for the generation of human bioengineered mouth and dental tissues for use in tissue engineering. To achieve this, acellular fibrin–agarose scaffolds (AFAS), non-functionalized fibrin-agarose oral mucosa stroma substitutes (n-FAOM), and novel functionalized fibrin-agarose oral mucosa stroma substitutes (F-FAOM) were developed and analyzed after 1, 2, and 3 weeks of in vitro development to determine extracellular matrix components as compared to native oral mucosa controls by using histochemistry and immunohistochemistry. Results demonstrate that functionalization speeds up the biofabrication method and contributes to improve the biomimetic characteristics of the scaffold in terms of extracellular matrix components and reduce the time required for in vitro tissue development.
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spelling pubmed-71787102020-04-28 In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds Blanco-Elices, Cristina España-Guerrero, Enrique Mateu-Sanz, Miguel Sánchez-Porras, David García-García, Óscar Darío Sánchez-Quevedo, María del Carmen Fernández-Valadés, Ricardo Alaminos, Miguel Martín-Piedra, Miguel Ángel Garzón, Ingrid Materials (Basel) Article Recent advances in tissue engineering offer innovative clinical alternatives in dentistry and regenerative medicine. Tissue engineering combines human cells with compatible biomaterials to induce tissue regeneration. Shortening the fabrication time of biomaterials used in tissue engineering will contribute to treatment improvement, and biomaterial functionalization can be exploited to enhance scaffold properties. In this work, we have tested an alternative biofabrication method by directly including human oral mucosa tissue explants within the biomaterial for the generation of human bioengineered mouth and dental tissues for use in tissue engineering. To achieve this, acellular fibrin–agarose scaffolds (AFAS), non-functionalized fibrin-agarose oral mucosa stroma substitutes (n-FAOM), and novel functionalized fibrin-agarose oral mucosa stroma substitutes (F-FAOM) were developed and analyzed after 1, 2, and 3 weeks of in vitro development to determine extracellular matrix components as compared to native oral mucosa controls by using histochemistry and immunohistochemistry. Results demonstrate that functionalization speeds up the biofabrication method and contributes to improve the biomimetic characteristics of the scaffold in terms of extracellular matrix components and reduce the time required for in vitro tissue development. MDPI 2020-04-04 /pmc/articles/PMC7178710/ /pubmed/32260417 http://dx.doi.org/10.3390/ma13071692 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Blanco-Elices, Cristina
España-Guerrero, Enrique
Mateu-Sanz, Miguel
Sánchez-Porras, David
García-García, Óscar Darío
Sánchez-Quevedo, María del Carmen
Fernández-Valadés, Ricardo
Alaminos, Miguel
Martín-Piedra, Miguel Ángel
Garzón, Ingrid
In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title_full In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title_fullStr In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title_full_unstemmed In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title_short In Vitro Generation of Novel Functionalized Biomaterials for Use in Oral and Dental Regenerative Medicine Applications. Running Title: Fibrin–Agarose Functionalized Scaffolds
title_sort in vitro generation of novel functionalized biomaterials for use in oral and dental regenerative medicine applications. running title: fibrin–agarose functionalized scaffolds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178710/
https://www.ncbi.nlm.nih.gov/pubmed/32260417
http://dx.doi.org/10.3390/ma13071692
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