Osteocytes Influence on Bone Matrix Integrity Affects Biomechanical Competence at Bone-Implant Interface of Bioactive-Coated Titanium Implants in Rat Tibiae.
Animals
Biomechanical Phenomena
/ drug effects
Bone Matrix
/ drug effects
Bone-Implant Interface
/ physiology
Calcification, Physiologic
/ drug effects
Coated Materials, Biocompatible
/ pharmacology
Fibrillar Collagens
/ metabolism
Male
Osteoblasts
/ drug effects
Osteoclasts
/ drug effects
Osteocytes
/ drug effects
Rats, Sprague-Dawley
Tibia
/ drug effects
Titanium
/ pharmacology
bioactive coating
gelatin
hyaluronic acid
osseointegration
osteocytes
titanium implants
Journal
International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791
Informations de publication
Date de publication:
29 Dec 2021
29 Dec 2021
Historique:
received:
04
12
2021
revised:
23
12
2021
accepted:
28
12
2021
entrez:
11
1
2022
pubmed:
12
1
2022
medline:
10
2
2022
Statut:
epublish
Résumé
Osseointegration is a prerequisite for the long-term success of implants. Titanium implants are preferred for their biocompatibility and mechanical properties. Nonetheless, the need for early and immediate loading requires enhancing these properties by adding bioactive coatings. In this preclinical study, extracellular matrix properties and cellular balance at the implant/bone interface was examined. Polyelectrolyte multilayers of chitosan and gelatin or with chitosan and Hyaluronic acid fabricated on titanium alloy using a layer-by-layer self-assembly process were compared with native titanium alloy. The study aimed to histologically evaluate bone parameters that correlate to the biomechanical anchorage enhancement resulted from bioactive coatings of titanium implants in a rat animal model. Superior collagen fiber arrangements and an increased number of active osteocytes reflected a significant improvement of bone matrix quality at the bone interface of the chitosan/gelatin-coated titan implants over chitosan/hyaluronic acid-coated and native implants. Furthermore, the numbers and localization of osteoblasts and osteoclasts in the reparative and remodeling phases suggested a better cellular balance in the chitosan/Gel-coated group over the other two groups. Investigating the micro-mechanical properties of bone tissue at the interface can elucidate detailed discrepancies between different promising bioactive coatings of titanium alloys to maximize their benefit in future medical applications.
Identifiants
pubmed: 35008800
pii: ijms23010374
doi: 10.3390/ijms23010374
pmc: PMC8745552
pii:
doi:
Substances chimiques
Coated Materials, Biocompatible
0
Fibrillar Collagens
0
Titanium
D1JT611TNE
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
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