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Hyperbaric oxygen therapy improves angiogenesis and bone formation in critical sized diaphyseal defects
Authors:JP Grassmann  J Schneppendahl  AR Hakimi  M Herten  M Betsch  TT Lögters  S Thelen  M Sager  M Wild  J Windolf  P Jungbluth  M Hakimi
Institution:1. Heinrich Heine University Hospital D, uesseldorf, Department of Trauma and Hand Surgery, Moorenstrasse 5, D‐40225 Duesseldorf, Germany;2. Heinrich Heine University Hospital Duesseldorf, Department of Oral Surgery, Moorenstr 5, 40225 Duesseldorf, Germany;3. Heinrich Heine University Hospital Duesseldorf, Animal Research Institute, Moorenstr 5, 40225 Duesseldorf, Germany;4. University Hospital Muenster, Department for Vascular and Endovascular Surgery, Waldeyerstra?e 30, 48149 Muenster, Germany
Abstract:Besides the use of autologous bone grafting several osteoconductive and osteoinductive methods have been reported to improve bone healing. However, persistent non‐union occurs in a considerable number of cases and compromised angiogenesis is suspected to impede bone regeneration. Hyperbaric oxygen therapy (HBO) improves angiogenesis. This study evaluates the effects of HBO on bone defects treated with autologous bone grafting in a bone defect model in rabbits. Twenty‐four New‐Zealand White Rabbits were subjected to a unilateral critical sized diaphyseal radius bone defect and treated with autologous cancellous bone transplantation. The study groups were exposed to an additional HBO treatment regimen. Bone regeneration was evaluated radiologically and histologically at 3 and 6 weeks, angiogenesis was assessed by immunohistochemistry at three and six weeks. The additional administration of HBO resulted in a significantly increased new bone formation and angiogenesis compared to the sole treatment with autologous bone grafting. These results were apparent after three and six weeks of treatment. The addition of HBO therapy to autologous bone grafts leads to significantly improved bone regeneration. The increase in angiogenesis observed could play a crucial role for the results observed. © 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 33:513–520, 2015.
Keywords:Angiogenesis  bone healing  HBO therapy  critical‐ size defect  diaphysis
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