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Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits

PURPOSE: To use a 3D printed poly (L-lactide) acid (PLLA) and hydroxyapatite (HA) composite as a bone substitute for reconstruction of a critical bone defect in the radius of rabbits. METHODS: A 1.5 cm ostectomy was performed in the radial diaphysis of 60 New Zealand white rabbits. The rabbits were...

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Autores principales: Minto, Bruno Watanabe, Sprada, Arícia Gomes, Gonçalves, José Aloizio, de Alcântara, Brenda Mendonça, Rocha, Thiago André Salvitti de Sá, Hespanha, Ana Carolina Valentim, Quarterone, Carolina, Sartori, Maressa da Rocha, Hataka, Alessandre, Uscategui, Ricardo Andres Ramirez, Dias, Luis Gustavo Gosuen Gonçalves
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira para o Desenvolvimento da Pesquisa em Cirurgia 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148815/
https://www.ncbi.nlm.nih.gov/pubmed/34037081
http://dx.doi.org/10.1590/ACB360404
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author Minto, Bruno Watanabe
Sprada, Arícia Gomes
Gonçalves, José Aloizio
de Alcântara, Brenda Mendonça
Rocha, Thiago André Salvitti de Sá
Hespanha, Ana Carolina Valentim
Quarterone, Carolina
Sartori, Maressa da Rocha
Hataka, Alessandre
Uscategui, Ricardo Andres Ramirez
Dias, Luis Gustavo Gosuen Gonçalves
author_facet Minto, Bruno Watanabe
Sprada, Arícia Gomes
Gonçalves, José Aloizio
de Alcântara, Brenda Mendonça
Rocha, Thiago André Salvitti de Sá
Hespanha, Ana Carolina Valentim
Quarterone, Carolina
Sartori, Maressa da Rocha
Hataka, Alessandre
Uscategui, Ricardo Andres Ramirez
Dias, Luis Gustavo Gosuen Gonçalves
author_sort Minto, Bruno Watanabe
collection PubMed
description PURPOSE: To use a 3D printed poly (L-lactide) acid (PLLA) and hydroxyapatite (HA) composite as a bone substitute for reconstruction of a critical bone defect in the radius of rabbits. METHODS: A 1.5 cm ostectomy was performed in the radial diaphysis of 60 New Zealand white rabbits. The rabbits were divided into three groups according to surgical treatment of the bone defect (group I – control, group II – bone graft, group III – 3D PLLA). Each group was divided into four subgroups with different radiographic and histopathologic evaluation times (T1 – 15 days, T2 – 30 days, T3 – 60 days, T4 – 90 days). RESULTS: The implant group had greater clinically lameness (p = 0.02), edema (p = 0.007), pain (p = 0.04) and more complications at the surgical site (p = 0.03). Histologically, this group showed greater congestion (p = 0.04), hemorrhage (p = 0.04) and inflammation. Osteogenesis was microscopically similar between days (p = 0.54) and treatments (p = 0.17), even though radiographically, more effective bone healing occurred in the graft group (II), with more callus and bone bridge formation. CONCLUSIONS: The customization of a 3D PLLA/HA scaffold was successful. However, in animals receiving the polymer-ceramic composite less bone callus and bone bridge was formed compared to the graft group.
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spelling pubmed-81488152021-06-04 Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits Minto, Bruno Watanabe Sprada, Arícia Gomes Gonçalves, José Aloizio de Alcântara, Brenda Mendonça Rocha, Thiago André Salvitti de Sá Hespanha, Ana Carolina Valentim Quarterone, Carolina Sartori, Maressa da Rocha Hataka, Alessandre Uscategui, Ricardo Andres Ramirez Dias, Luis Gustavo Gosuen Gonçalves Acta Cir Bras Original Article PURPOSE: To use a 3D printed poly (L-lactide) acid (PLLA) and hydroxyapatite (HA) composite as a bone substitute for reconstruction of a critical bone defect in the radius of rabbits. METHODS: A 1.5 cm ostectomy was performed in the radial diaphysis of 60 New Zealand white rabbits. The rabbits were divided into three groups according to surgical treatment of the bone defect (group I – control, group II – bone graft, group III – 3D PLLA). Each group was divided into four subgroups with different radiographic and histopathologic evaluation times (T1 – 15 days, T2 – 30 days, T3 – 60 days, T4 – 90 days). RESULTS: The implant group had greater clinically lameness (p = 0.02), edema (p = 0.007), pain (p = 0.04) and more complications at the surgical site (p = 0.03). Histologically, this group showed greater congestion (p = 0.04), hemorrhage (p = 0.04) and inflammation. Osteogenesis was microscopically similar between days (p = 0.54) and treatments (p = 0.17), even though radiographically, more effective bone healing occurred in the graft group (II), with more callus and bone bridge formation. CONCLUSIONS: The customization of a 3D PLLA/HA scaffold was successful. However, in animals receiving the polymer-ceramic composite less bone callus and bone bridge was formed compared to the graft group. Sociedade Brasileira para o Desenvolvimento da Pesquisa em Cirurgia 2021-05-21 /pmc/articles/PMC8148815/ /pubmed/34037081 http://dx.doi.org/10.1590/ACB360404 Text en https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Minto, Bruno Watanabe
Sprada, Arícia Gomes
Gonçalves, José Aloizio
de Alcântara, Brenda Mendonça
Rocha, Thiago André Salvitti de Sá
Hespanha, Ana Carolina Valentim
Quarterone, Carolina
Sartori, Maressa da Rocha
Hataka, Alessandre
Uscategui, Ricardo Andres Ramirez
Dias, Luis Gustavo Gosuen Gonçalves
Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title_full Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title_fullStr Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title_full_unstemmed Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title_short Three-dimensional printed poly (L-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
title_sort three-dimensional printed poly (l-lactide) and hydroxyapatite composite for reconstruction of critical bone defect in rabbits
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148815/
https://www.ncbi.nlm.nih.gov/pubmed/34037081
http://dx.doi.org/10.1590/ACB360404
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