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Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects

The aim of this study was to test whether lyophilized conditioned media from human dental pulp mesenchymal stem cell cultures promote the healing of critical-size defects created in the calvaria of rats. Prior to the surgical procedure, the medium in which dental pulp stem cells were cultured was fr...

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Autores principales: Buss, Leonardo Fernandes, de Martin, Gustavo Sigrist, Martinez, Elizabeth Ferreira, Filgueiras, Isabela Amanda de Abreu Araújo Porcaro, Magnabosco, José Luiz, Alves, Bruno Frenhan, de Macedo Almeida, Bruno, Kotaka, Tatiana, Teixeira, Marcelo Lucchesi, Ferreira, José Ricardo Muniz, da Rocha, Daniel Navarro, Canal, Raul, Aloise, Antonio Carlos, Holliday, Lexie Shannon, Pelegrine, André Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10455841/
https://www.ncbi.nlm.nih.gov/pubmed/37623641
http://dx.doi.org/10.3390/jfb14080396
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author Buss, Leonardo Fernandes
de Martin, Gustavo Sigrist
Martinez, Elizabeth Ferreira
Filgueiras, Isabela Amanda de Abreu Araújo Porcaro
Magnabosco, José Luiz
Alves, Bruno Frenhan
de Macedo Almeida, Bruno
Kotaka, Tatiana
Teixeira, Marcelo Lucchesi
Ferreira, José Ricardo Muniz
da Rocha, Daniel Navarro
Canal, Raul
Aloise, Antonio Carlos
Holliday, Lexie Shannon
Pelegrine, André Antonio
author_facet Buss, Leonardo Fernandes
de Martin, Gustavo Sigrist
Martinez, Elizabeth Ferreira
Filgueiras, Isabela Amanda de Abreu Araújo Porcaro
Magnabosco, José Luiz
Alves, Bruno Frenhan
de Macedo Almeida, Bruno
Kotaka, Tatiana
Teixeira, Marcelo Lucchesi
Ferreira, José Ricardo Muniz
da Rocha, Daniel Navarro
Canal, Raul
Aloise, Antonio Carlos
Holliday, Lexie Shannon
Pelegrine, André Antonio
author_sort Buss, Leonardo Fernandes
collection PubMed
description The aim of this study was to test whether lyophilized conditioned media from human dental pulp mesenchymal stem cell cultures promote the healing of critical-size defects created in the calvaria of rats. Prior to the surgical procedure, the medium in which dental pulp stem cells were cultured was frozen and lyophilized. After general anesthesia, an 8 mm diameter bone defect was created in the calvaria of twenty-four rats. The defects were filled with the following materials: xenograft alone (G1) or xenograft associated with lyophilized conditioned medium (G2). After 14 or 42 days, the animals were euthanized, and the specimens processed for histologic and immunohistochemical analysis. Bone formation at the center of the defect was observed only in the G2 at 42 days. At both timepoints, increased staining for VEGF, a marker for angiogenesis, was observed in G2. Consistent with this, at 14 days, G2 also had a higher number of blood vessels detected by immunostaining with an anti-CD34 antibody. In conclusion, conditioned media from human dental pulp mesenchymal stem cell cultures had a positive effect on the regenerative process in rat critical-size bone defects. Both the formation of bone and enhancement of vascularization were stimulated by the conditioned media.
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spelling pubmed-104558412023-08-26 Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects Buss, Leonardo Fernandes de Martin, Gustavo Sigrist Martinez, Elizabeth Ferreira Filgueiras, Isabela Amanda de Abreu Araújo Porcaro Magnabosco, José Luiz Alves, Bruno Frenhan de Macedo Almeida, Bruno Kotaka, Tatiana Teixeira, Marcelo Lucchesi Ferreira, José Ricardo Muniz da Rocha, Daniel Navarro Canal, Raul Aloise, Antonio Carlos Holliday, Lexie Shannon Pelegrine, André Antonio J Funct Biomater Article The aim of this study was to test whether lyophilized conditioned media from human dental pulp mesenchymal stem cell cultures promote the healing of critical-size defects created in the calvaria of rats. Prior to the surgical procedure, the medium in which dental pulp stem cells were cultured was frozen and lyophilized. After general anesthesia, an 8 mm diameter bone defect was created in the calvaria of twenty-four rats. The defects were filled with the following materials: xenograft alone (G1) or xenograft associated with lyophilized conditioned medium (G2). After 14 or 42 days, the animals were euthanized, and the specimens processed for histologic and immunohistochemical analysis. Bone formation at the center of the defect was observed only in the G2 at 42 days. At both timepoints, increased staining for VEGF, a marker for angiogenesis, was observed in G2. Consistent with this, at 14 days, G2 also had a higher number of blood vessels detected by immunostaining with an anti-CD34 antibody. In conclusion, conditioned media from human dental pulp mesenchymal stem cell cultures had a positive effect on the regenerative process in rat critical-size bone defects. Both the formation of bone and enhancement of vascularization were stimulated by the conditioned media. MDPI 2023-07-25 /pmc/articles/PMC10455841/ /pubmed/37623641 http://dx.doi.org/10.3390/jfb14080396 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Buss, Leonardo Fernandes
de Martin, Gustavo Sigrist
Martinez, Elizabeth Ferreira
Filgueiras, Isabela Amanda de Abreu Araújo Porcaro
Magnabosco, José Luiz
Alves, Bruno Frenhan
de Macedo Almeida, Bruno
Kotaka, Tatiana
Teixeira, Marcelo Lucchesi
Ferreira, José Ricardo Muniz
da Rocha, Daniel Navarro
Canal, Raul
Aloise, Antonio Carlos
Holliday, Lexie Shannon
Pelegrine, André Antonio
Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title_full Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title_fullStr Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title_full_unstemmed Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title_short Conditioned Media from Human Pulp Stem Cell Cultures Improve Bone Regeneration in Rat Calvarial Critical-Size Defects
title_sort conditioned media from human pulp stem cell cultures improve bone regeneration in rat calvarial critical-size defects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10455841/
https://www.ncbi.nlm.nih.gov/pubmed/37623641
http://dx.doi.org/10.3390/jfb14080396
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