## Abstract The effect of human adrenomedullin was investigated using an __ex vivo__ perfused canine tibial model in the absence of vascular endothelium. Adrenomedullin is a novel peptide with known vasodilator properties. In this model. a 0.1 ml bolus injection of 10^β5^ __M__ of either acetylchol
Effect of rhBMP-2 on tibial plateau fractures in a canine model
β Scribed by Susan L. Schaefer; Yan Lu; Howard Seeherman; X. Jian Li; Mandi J. Lopez; Mark D. Markel
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 118 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0736-0266
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
This study was to determine the efficacy of recombinant human bone morphogenetic protienβ2 (rhBMPβ2)/calcium phosphate matrix (CPX) paste to accelerate healing in a canine articular fracture model with associated subchondral defect. rhBMPβ2/CPX (BMP), CPX alone (CPX) or autogenous bone graft (ABG) was administered to a canine articular tibial plateau osteotomy with a subchondral defect in each of 21 female dogs. The unoperated contralateral limbs served as controls. Ground reaction forces, synovial fluid, radiographic changes, mechanical testing, bone density, and histology of bone and synovium were analyzed at 6 weeks after surgery. Radiographic analysis demonstrated that the BMP and CPX groups showed improved bony healing compared to the ABG group at week 6. Histomorphometric analysis demonstrated that the BMP group had significantly increased trabecular bone volume compared to the CPX and ABG groups. Mechanical testing revealed that the BMP group had significantly greater maximum failure loads than the ABG group. Histological analysis demonstrated that the BMP group had significantly less subβsynovial inflammation than CPX group. This study demonstrated that rhBMPβ2/CPX accelerated healing of articular fractures with subchondral defect compared to ABG in most of the parameters evaluated, and had less subsynovial inflammation than the CPX alone in a canine model. Β© 2008 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 27: 466β471, 2009
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