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Article

Comparison of Two Bovine Commercial Xenografts in the Regeneration of Critical Cranial Defects

by
Carlos Humberto Valencia-Llano
1,
Diego López-Tenorio
1,
Marcela Saavedra
2,
Paula A. Zapata
2 and
Carlos David Grande-Tovar
3,*
1
Grupo Biomateriales Dentales, Escuela de Odontología, Universidad del Valle, Calle 4B # 36-00, Cali 76001, Colombia
2
Grupo de Polímeros, Facultad de Química y Biología, Universidad de Santiago de Chile (USACH), Santiago 9170020, Chile
3
Grupo de Investigación de Fotoquímica y Fotobiología, Universidad del Atlántico, Carrera 30 Número 8-49, Puerto Colombia 081008, Colombia
*
Author to whom correspondence should be addressed.
Molecules 2022, 27(18), 5745; https://doi.org/10.3390/molecules27185745
Submission received: 1 August 2022 / Revised: 20 August 2022 / Accepted: 25 August 2022 / Published: 6 September 2022
(This article belongs to the Special Issue Biopolymer Based Solutions for Biomedical Applications)

Abstract

Autologous bone is the gold standard in regeneration processes. However, there is an endless search for alternative materials in bone regeneration. Xenografts can act as bone substitutes given the difficulty of obtaining bone tissue from patients and before the limitations in the availability of homologous tissue donors. Bone neoformation was studied in critical-size defects created in the parietal bone of 40 adult male Wistar rats, implanted with xenografts composed of particulate bovine hydroxyapatite (HA) and with blocks of bovine hydroxyapatite (HA) and Collagen, which introduces crystallinity to the materials. The Fourier-transform infrared spectroscopy (FTIR) analysis demonstrated the carbonate and phosphate groups of the hydroxyapatite and the amide groups of the collagen structure, while the thermal transitions for HA and HA/collagen composites established mainly dehydration endothermal processes, which increased (from 79 °C to 83 °C) for F2 due to the collagen presence. The xenograft’s X-ray powder diffraction (XRD) analysis also revealed the bovine HA crystalline structure, with a prominent peak centered at 32°. We observed macroporosity and mesoporosity in the xenografts from the morphology studies with heterogeneous distribution. The two xenografts induced neoformation in defects of critical size. Histological, histochemical, and scanning electron microscopy (SEM) analyses were performed 30, 60, and 90 days after implantation. The empty defects showed signs of neoformation lower than 30% in the three periods, while the defects implanted with the material showed partial regeneration. InterOss Collagen material temporarily induced osteon formation during the healing process. The results presented here are promising for bone regeneration, demonstrating a beneficial impact in the biomedical field.
Keywords: bone substitutes; collagen membranes; critical size defects; xenografts bone substitutes; collagen membranes; critical size defects; xenografts

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MDPI and ACS Style

Valencia-Llano, C.H.; López-Tenorio, D.; Saavedra, M.; Zapata, P.A.; Grande-Tovar, C.D. Comparison of Two Bovine Commercial Xenografts in the Regeneration of Critical Cranial Defects. Molecules 2022, 27, 5745. https://doi.org/10.3390/molecules27185745

AMA Style

Valencia-Llano CH, López-Tenorio D, Saavedra M, Zapata PA, Grande-Tovar CD. Comparison of Two Bovine Commercial Xenografts in the Regeneration of Critical Cranial Defects. Molecules. 2022; 27(18):5745. https://doi.org/10.3390/molecules27185745

Chicago/Turabian Style

Valencia-Llano, Carlos Humberto, Diego López-Tenorio, Marcela Saavedra, Paula A. Zapata, and Carlos David Grande-Tovar. 2022. "Comparison of Two Bovine Commercial Xenografts in the Regeneration of Critical Cranial Defects" Molecules 27, no. 18: 5745. https://doi.org/10.3390/molecules27185745

APA Style

Valencia-Llano, C. H., López-Tenorio, D., Saavedra, M., Zapata, P. A., & Grande-Tovar, C. D. (2022). Comparison of Two Bovine Commercial Xenografts in the Regeneration of Critical Cranial Defects. Molecules, 27(18), 5745. https://doi.org/10.3390/molecules27185745

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