Use of Plant Extracts in Polymeric Scaffolds in the Regeneration of Mandibular Injuries

Author:

de Oliveira Bruna Eduarda Gandra1,Maia Fernanda Latorre Melgaço2,Massimino Lívia Contini3,Garcia Claudio Fernandes4,Plepis Ana Maria de Guzzi34ORCID,Martins Virgínia da Conceição Amaro4,Reis Carlos Henrique Bertoni56,Silva Vinícius Rodrigues7,Bezerra Andre Alves1,Pauris Carolina Chen8,Buchaim Daniela Vieira5910ORCID,Silva Yggor Biloria e8,Buchaim Rogerio Leone69ORCID,da Cunha Marcelo Rodrigues38

Affiliation:

1. Orthopedics and Traumatology Sector, Faculty of Medicine of Jundiaí, Jundiaí 13202-550, Brazil

2. Department of Implant Dentistry, Faculdade São Leopoldo Mandic, Campinas 13045-755, Brazil

3. Interunit Postgraduate Program in Bioengineering (EESC/FMRP/IQSC), University of São Paulo (USP), São Carlos 13566-590, Brazil

4. São Carlos Institute of Chemistry, University of São Paulo, USP, São Carlos 13566-590, Brazil

5. Postgraduate Program in Structural and Functional Interactions in Rehabilitation, University of Marilia (UNIMAR), Marília 17525-902, Brazil

6. Department of Biological Sciences, Bauru School of Dentistry, University of São Paulo (FOB/USP), Bauru 17012-901, Brazil

7. Department of Human Anatomy, University of San Francisco (USF), Bragança Paulista 12916-900, Brazil

8. Postgraduate Program in Health Sciences, Faculty of Medicine of Jundiaí, Jundiaí 13202-550, Brazil

9. Graduate Program in Anatomy of Domestic and Wild Animals, Faculty of Veterinary Medicine and Animal Science (FMVZ), University of São Paulo (USP), São Paulo 05508-270, Brazil

10. Medical School, University Center of Adamantina (UNIFAI), Adamantina 17800-000, Brazil

Abstract

Severe loss of bone mass may require grafting, and, among the alternatives available, there are natural biomaterials that can act as scaffolds for the cell growth necessary for tissue regeneration. Collagen and elastin polymers are a good alternative due to their biomimetic properties of bone tissue, and their characteristics can be improved with the addition of polysaccharides such as chitosan and bioactive compounds such as jatoba resin and pomegranate extract due to their antigenic actions. The aim of this experimental protocol was to evaluate bone neoformation in experimentally made defects in the mandible of rats using polymeric scaffolds with plant extracts added. Thirty rats were divided into group 1, with a mandibular defect filled with a clot from the lesion and no graft implant (G1-C, n = 10); group 2, filled with collagen/chitosan/jatoba resin scaffolds (G2-CCJ, n = 10); and group 3, with collagen/nanohydroxyapatite/elastin/pomegranate extract scaffolds (G3-CHER, n = 10). Six weeks after surgery, the animals were euthanized and samples from the surgical areas were submitted to macroscopic, radiological, histological, and morphometric analysis of the mandibular lesion repair process. The results showed no inflammatory infiltrates in the surgical area, indicating good acceptance of the scaffolds in the microenvironment of the host area. In the control group (G1), there was a predominance of reactive connective tissue, while in the grafted groups (G2 and G3), there was bone formation from the margins of the lesion, but it was still insufficient for total bone repair of the defect within the experimental period standardized in this study. The histomorphometric analysis showed that the mean percentage of bone volume formed in the surgical area of groups G1, G2, and G3 was 17.17 ± 2.68, 27.45 ± 1.65, and 34.07 ± 0.64 (mean ± standard deviation), respectively. It can be concluded that these scaffolds with plant extracts added can be a viable alternative for bone repair, as they are easily manipulated, have a low production cost, and stimulate the formation of new bone by osteoconduction.

Publisher

MDPI AG

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