» Articles » PMID: 23207801

Expression of Antagonists of WNT and BMP Signaling After Non-rigid Fixation of Osteotomies

Overview
Journal Bone
Date 2012 Dec 5
PMID 23207801
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

Delayed fracture healing and non-unions represent rare but severe complications in orthopedic surgery. Further knowledge on the mechanisms of the bone repair process and of the development of a pseudoarthrosis is essential to predict and prevent impaired healing of fractures. The present study aimed at elucidating differences in gene expression during the repair of rigidly and non-rigidly fixed osteotomies. For this purpose, the MouseFix™ and the FlexiPlate™ systems (AO Development Institute, Davos, CH), allowing the creation of well defined osteotomies in mouse femora, were employed. A time course following the healing process of the osteotomy was performed and bones and periimplant tissues were analyzed by high-resolution X-ray, MicroCT and by histology. For the assessment of gene expression, Low Density Arrays (LDA) were done. In animals with rigid fixation, X-ray and MicroCT revealed healing of the osteotomy within 3 weeks. Using the FlexiPlate™ system, the osteotomy was still visible by X-ray after 3 weeks and a stabilizing cartilaginous callus was formed. After 4.5 weeks, the callus was remodeled and the osteotomy was, on a histological level, healed. Gene expression studies revealed levels of transcripts encoding proteins associated with inflammatory processes not to be altered in tissues from bones with rigid and non-rigid fixation, respectively. Levels of transcripts encoding proteins of the extracellular matrix and essential for bone cell functions were not increased in the rigidly fixed group when compared to controls without osteotomy. In the FlexiPlate™ group, levels of transcripts encoding the same set of genes were significantly increased 3 weeks after surgery. Expression of transcripts encoding BMPs and BMP antagonists was increased after 3 weeks in repair tissues from bones fixed with FlexiPlate™, as were inhibitors of the WNT signaling pathways. Little changes only were detected in transcript levels of tissues from rigidly fixed bones. The data of the present study suggest that rigid fixation enables accelerated healing of an experimental osteotomy as compared to non-rigid fixation. The changes in the healing process after non-rigid fixation are accompanied by an increase in the levels of transcripts encoding inhibitors of osteogenic pathways and, probably as a consequence, by temporal changes in bone matrix synthesis.

Citing Articles

Impact of osteoporosis and osteoporosis medications on fracture healing: a narrative review.

Chandran M, Akesson K, Javaid M, Harvey N, Blank R, Brandi M Osteoporos Int. 2024; 35(8):1337-1358.

PMID: 38587674 PMC: 11282157. DOI: 10.1007/s00198-024-07059-8.


Bisphosphonates do not affect healing of a critical-size defect in estrogen-deficient mice.

Strunz F, Gentil-Perret S, Siegrist M, Bohner M, Saulacic N, Hofstetter W Bone Rep. 2024; 20:101739.

PMID: 38304619 PMC: 10831175. DOI: 10.1016/j.bonr.2024.101739.


Effects of sclerostin antibody on bone healing.

Mihara A, Yukata K, Seki T, Iwanaga R, Nishida N, Fujii K World J Orthop. 2021; 12(9):651-659.

PMID: 34631449 PMC: 8472444. DOI: 10.5312/wjo.v12.i9.651.


Fracture biomechanics influence local and systemic immune responses in a murine fracture-related infection model.

Sabate-Bresco M, Berset C, Zeiter S, Stanic B, Thompson K, Ziegler M Biol Open. 2021; 10(9).

PMID: 34240122 PMC: 8496694. DOI: 10.1242/bio.057315.


The BMP-2 mutant L51P: a BMP receptor IA binding-deficient inhibitor of noggin.

Khattab H, Kubota S, Takigawa M, Kuboki T, Sebald W J Bone Miner Metab. 2018; 37(2):199-205.

PMID: 29667005 DOI: 10.1007/s00774-018-0925-0.