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Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones

Bone defects cause aesthetic and functional changes that affect the social, economic and especially the emotional life of human beings. This complication stimulates the scientific community to investigate strategies aimed at improving bone reconstruction processes using complementary therapies. Phot...

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Autores principales: Rosso, Marcelie Priscila de Oliveira, Oyadomari, Aline Tiemi, Pomini, Karina Torres, Della Coletta, Bruna Botteon, Shindo, João Vitor Tadashi Cosin, Ferreira Júnior, Rui Seabra, Barraviera, Benedito, Cassaro, Claudia Vilalva, Buchaim, Daniela Vieira, Teixeira, Daniel de Bortoli, Barbalho, Sandra Maria, Alcalde, Murilo Priori, Duarte, Marco Antonio Hungaro, Andreo, Jesus Carlos, Buchaim, Rogério Leone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175234/
https://www.ncbi.nlm.nih.gov/pubmed/32121647
http://dx.doi.org/10.3390/biom10030383
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author Rosso, Marcelie Priscila de Oliveira
Oyadomari, Aline Tiemi
Pomini, Karina Torres
Della Coletta, Bruna Botteon
Shindo, João Vitor Tadashi Cosin
Ferreira Júnior, Rui Seabra
Barraviera, Benedito
Cassaro, Claudia Vilalva
Buchaim, Daniela Vieira
Teixeira, Daniel de Bortoli
Barbalho, Sandra Maria
Alcalde, Murilo Priori
Duarte, Marco Antonio Hungaro
Andreo, Jesus Carlos
Buchaim, Rogério Leone
author_facet Rosso, Marcelie Priscila de Oliveira
Oyadomari, Aline Tiemi
Pomini, Karina Torres
Della Coletta, Bruna Botteon
Shindo, João Vitor Tadashi Cosin
Ferreira Júnior, Rui Seabra
Barraviera, Benedito
Cassaro, Claudia Vilalva
Buchaim, Daniela Vieira
Teixeira, Daniel de Bortoli
Barbalho, Sandra Maria
Alcalde, Murilo Priori
Duarte, Marco Antonio Hungaro
Andreo, Jesus Carlos
Buchaim, Rogério Leone
author_sort Rosso, Marcelie Priscila de Oliveira
collection PubMed
description Bone defects cause aesthetic and functional changes that affect the social, economic and especially the emotional life of human beings. This complication stimulates the scientific community to investigate strategies aimed at improving bone reconstruction processes using complementary therapies. Photobiomodulation therapy (PBMT) and the use of new biomaterials, including heterologous fibrin biopolymer (HFB), are included in this challenge. The objective of the present study was to evaluate the influence of photobiomodulation therapy on bone tibial reconstruction of rats with biomaterial consisting of lyophilized bovine bone matrix (BM) associated or not with heterologous fibrin biopolymer. Thirty male rats were randomly separated into three groups of 10 animals. In all animals, after the anesthetic procedure, a noncritical tibial defect of 2 mm was performed. The groups received the following treatments: Group 1: BM + PBMT, Group 2: BM + HFB and Group 3: BM + HFB + PBMT. The animals from Groups 1 and 3 were submitted to PBMT in the immediate postoperative period and every 48 h until the day of euthanasia that occurred at 14 and 42 days. Analyses by computed microtomography (µCT) and histomorphometry showed statistical difference in the percentage of bone formation between Groups 3 (BM + HB + PBMT) and 2 (BM + HFB) (26.4% ± 1.03% and 20.0% ± 1.87%, respectively) at 14 days and at 42 days (38.2% ± 1.59% and 31.6% ± 1.33%, respectively), and at 42 days there was presence of bone with mature characteristics and organized connective tissue. The µCT demonstrated BM particles filling the defect and the deposition of new bone in the superficial region, especially in the ruptured cortical. It was concluded that the association of PBMT with HFB and BM has the potential to assist in the process of reconstructing bone defects in the tibia of rats.
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spelling pubmed-71752342020-04-28 Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones Rosso, Marcelie Priscila de Oliveira Oyadomari, Aline Tiemi Pomini, Karina Torres Della Coletta, Bruna Botteon Shindo, João Vitor Tadashi Cosin Ferreira Júnior, Rui Seabra Barraviera, Benedito Cassaro, Claudia Vilalva Buchaim, Daniela Vieira Teixeira, Daniel de Bortoli Barbalho, Sandra Maria Alcalde, Murilo Priori Duarte, Marco Antonio Hungaro Andreo, Jesus Carlos Buchaim, Rogério Leone Biomolecules Article Bone defects cause aesthetic and functional changes that affect the social, economic and especially the emotional life of human beings. This complication stimulates the scientific community to investigate strategies aimed at improving bone reconstruction processes using complementary therapies. Photobiomodulation therapy (PBMT) and the use of new biomaterials, including heterologous fibrin biopolymer (HFB), are included in this challenge. The objective of the present study was to evaluate the influence of photobiomodulation therapy on bone tibial reconstruction of rats with biomaterial consisting of lyophilized bovine bone matrix (BM) associated or not with heterologous fibrin biopolymer. Thirty male rats were randomly separated into three groups of 10 animals. In all animals, after the anesthetic procedure, a noncritical tibial defect of 2 mm was performed. The groups received the following treatments: Group 1: BM + PBMT, Group 2: BM + HFB and Group 3: BM + HFB + PBMT. The animals from Groups 1 and 3 were submitted to PBMT in the immediate postoperative period and every 48 h until the day of euthanasia that occurred at 14 and 42 days. Analyses by computed microtomography (µCT) and histomorphometry showed statistical difference in the percentage of bone formation between Groups 3 (BM + HB + PBMT) and 2 (BM + HFB) (26.4% ± 1.03% and 20.0% ± 1.87%, respectively) at 14 days and at 42 days (38.2% ± 1.59% and 31.6% ± 1.33%, respectively), and at 42 days there was presence of bone with mature characteristics and organized connective tissue. The µCT demonstrated BM particles filling the defect and the deposition of new bone in the superficial region, especially in the ruptured cortical. It was concluded that the association of PBMT with HFB and BM has the potential to assist in the process of reconstructing bone defects in the tibia of rats. MDPI 2020-03-02 /pmc/articles/PMC7175234/ /pubmed/32121647 http://dx.doi.org/10.3390/biom10030383 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
Rosso, Marcelie Priscila de Oliveira
Oyadomari, Aline Tiemi
Pomini, Karina Torres
Della Coletta, Bruna Botteon
Shindo, João Vitor Tadashi Cosin
Ferreira Júnior, Rui Seabra
Barraviera, Benedito
Cassaro, Claudia Vilalva
Buchaim, Daniela Vieira
Teixeira, Daniel de Bortoli
Barbalho, Sandra Maria
Alcalde, Murilo Priori
Duarte, Marco Antonio Hungaro
Andreo, Jesus Carlos
Buchaim, Rogério Leone
Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title_full Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title_fullStr Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title_full_unstemmed Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title_short Photobiomodulation Therapy Associated with Heterologous Fibrin Biopolymer and Bovine Bone Matrix Helps to Reconstruct Long Bones
title_sort photobiomodulation therapy associated with heterologous fibrin biopolymer and bovine bone matrix helps to reconstruct long bones
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175234/
https://www.ncbi.nlm.nih.gov/pubmed/32121647
http://dx.doi.org/10.3390/biom10030383
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