Grassmann J P, Schneppendahl J, Sager M, Hakimi A R, Herten M, Loegters T T, Wild M, Hakimi M, Windolf J, Jungbluth P
Department of Trauma and Handsurgery, Heinrich Heine University Hospital Duesseldorf, Moorenstr. 5, 40225, Duesseldorf, Germany.
J Mater Sci Mater Med. 2015 Jan;26(1):5331. doi: 10.1007/s10856-014-5331-0. Epub 2015 Jan 11.
Neoangiogenesis represents an essential part of bone regeneration. Therefore the improvement of neovascularization is the subject of various research approaches. In addition autologous mesenchymal stem cells concentrate in combination with bone substitute materials have been shown to support bone regeneration. In a rabbit model we examined the proposed synergistic effect of hyperbaric oxygen therapy (HBOT) and bone marrow concentrate (BMC) with porous calcium phosphate granules (CPG) on neoangiogenesis and osseous consolidation of a critical- size defect. The animal groups treated with HBOT showed a significantly higher microvessel density (MVD) by immunhistochemistry. Furthermore HBOT groups presented a significantly larger amount of new bone formation histomorphometrically as well as radiologically. We conclude that the increase in perfusion as a result of increased angiogenesis may play a key role in the effects of HBOT and consequently promotes bone healing.
新生血管形成是骨再生的重要组成部分。因此,改善血管新生是各种研究方法的主题。此外,自体间充质干细胞浓缩物与骨替代材料联合使用已被证明可支持骨再生。在兔模型中,我们研究了高压氧治疗(HBOT)和骨髓浓缩物(BMC)与多孔磷酸钙颗粒(CPG)对临界尺寸骨缺损的新生血管形成和骨愈合的协同作用。通过免疫组织化学检测,接受HBOT治疗的动物组微血管密度(MVD)显著更高。此外,从组织形态计量学和放射学角度来看,HBOT组的新骨形成量明显更大。我们得出结论,血管生成增加导致的灌注增加可能在HBOT的作用中起关键作用,从而促进骨愈合。