In Vivo Evaluation of Bovine Xenograft Associated With Oxygen Therapy in Alveolar Bone Repair

Author:

de Almeida Camila Saggioro1,Sartoretto Suelen C.23,Durte Isabelle Martins4,Alves Adriana T. N. N.5,Barreto Helder Valiense6,Resende Rodrigo F. B.37,Calasans-Maia Mônica D.8,de Albuquerque José Calasans-Maia8

Affiliation:

1. Department and Clinical Research Laboratory in Dentistry, Universidade Federal Fluminense, Niteroi, RJ, Brazil.

2. Oral Surgery Department, Universidade Veiga de Almeida, Rio de Janeiro, RJ, Brazil.

3. Oral Surgery Department, Universidade Iguaçu, Nova Iguaçu, RJ, Brazil.

4. Graduate Program in Dentistry, Universidade Veiga de Almeida, Rio de Janeiro, RJ, Brazil.

5. Oral Diagnosis Department, Universidade Federal Fluminense, Niteroi, RJ, Brazil.

6. Implantology Department, CESUPI, Ilhéus, Bahia, Brazil.

7. Oral Surgery Department, Universidade Federal Fluminense, Niteroi, RJ, Brazil.

8. Oral Surgery Department and Clinical Research Laboratory in Dentistry, Universidade Federal Fluminense, Niteroi, RJ, Brazil.

Abstract

To preserve alveolar bone thickness and width after extraction, clinical strategies have been adopted to reduce or eliminate the need for future surgical interventions to increase the alveolar ridge. The use of xenogeneic biomaterials has been increasing for such application. The association of bone substitutes with active oxygen-based materials, which is essential in the wound-healing process, could accelerate bone repair, optimizing the maintenance of alveolar architecture after extraction. However, the truth of this hypothesis is not clear. The present study aimed to compare the biological response to inorganic bovine bone graft Bonefill (BF), associated or not with active oxygen-based oral gel Bluem (BF+BM), in alveolar bone repair. Twenty female Wistar rats were randomly allocated. The left upper central incisor was extracted, and the dental sockets were filled with BF in the control group (n = 10) and with BF+BM in the experimental group (n = 10). The animals were euthanized at 7 and 42 days after implantation (n = 5), and the samples were processed for descriptive histological and histomorphometric evaluations. The results showed no significant difference between the groups (P > .05). Both groups presented a time-dependent increase in newly formed bone and biosorption biomaterial (P = .0001). The association between active oxygen-based gel and inorganic bovine bone graft did not interfere with or improve bone repair during the experimental periods of alveolar bone repair in rats.

Publisher

American Academy of Implant Dentistry

Subject

Oral Surgery

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