Department of Periodontology, School of Graduate Dentistry, Haifa, Israel; Research Institute for Bone Repair, Rambam Health Care Campus, Haifa, Israel; The Rappaport Family Faculty of Medicine, Technion - Israel Institute of Technology, Haifa, Israel.
J Clin Periodontol. 2015 Jan;42(1):89-95. doi: 10.1111/jcpe.12325. Epub 2015 Jan 9.
Endothelial progenitor cells (EPC) participate in angiogenesis and osteogenesis, therefore, have the potential to enhance extra-cortical bone formation.
To enhance extra-cortical bone formation following local transplantation of human peripheral blood-derived EPC (hEPC) in a guided bone regeneration (GBR) nude rat calvaria model.
hEPC were isolated from peripheral blood of healthy volunteers. Cells were cultured and characterized by flow cytometry for specific endothelial markers. Following exposure of nude rat calvaria, gold domes were filled with 10(6) hEPC mixed with βTCP (n = 6). Domes filled with βTCP served as control (n = 6). Rats were sacrificed after 3 months. New bone formation and blood vessel density were analysed by histology and histomorphometry. Transplanted hEPC were located in the regenerated tissue using immunohistology.
Abundant vasculature was observed adjacent to the newly formed bone. According to histomorphometric analysis: blood vessel density was 7.5 folds higher in the hEPC compared with the control group. Similarly, gained extra-cortical bone height (2.46 ± 1.1 mm versus 0.843 ± 0.61 mm, p = 0.01) and bone area fraction (19.42 ± 7.48% versus 4.81 ± 3.93%, p = 0.001) were elevated following hEPC transplantation. Moreover, hEPC expressing human-specific CD31 were integrated into blood vessel walls adjacent to newly formed bone.
In nude rat GBR calvaria model, transplantation of hEPC significantly enhanced vasculogenesis and osteogenesis.
内皮祖细胞(EPC)参与血管生成和骨生成,因此具有增强皮质外骨形成的潜力。
在裸鼠颅骨引导骨再生(GBR)模型中局部移植人外周血源性内皮祖细胞(hEPC)以增强皮质外骨形成。
从健康志愿者的外周血中分离 hEPC。通过流式细胞术对细胞进行培养和鉴定,以鉴定其特定的内皮标志物。裸鼠颅骨暴露后,在金顶内填充 10(6)hEPC 与 βTCP(n=6)的混合物。填充βTCP 的金顶作为对照(n=6)。3 个月后处死大鼠。通过组织学和组织形态计量学分析新骨形成和血管密度。使用免疫组织化学定位移植的 hEPC。
在新形成的骨旁观察到丰富的血管。根据组织形态计量学分析:与对照组相比,hEPC 的血管密度高 7.5 倍。同样,获得的皮质外骨高度(2.46±1.1mm 与 0.843±0.61mm,p=0.01)和骨面积分数(19.42±7.48%与 4.81±3.93%,p=0.001)在 hEPC 移植后升高。此外,表达人特异性 CD31 的 hEPC 整合到与新形成骨相邻的血管壁中。
在裸鼠 GBR 颅骨模型中,hEPC 的移植显著增强了血管生成和骨生成。