Hisatome Takashi, Yasunaga Yuji, Yanada Shinobu, Tabata Yasuhiko, Ikada Yoshito, Ochi Mitsuo
Department of Orthopedic Surgery, Graduate School of Biomedical Sciences, Hiroshima University, 1-2-3 Kasumi, Minami-ku, Hiroshima 734-8551, Japan.
Biomaterials. 2005 Aug;26(22):4550-6. doi: 10.1016/j.biomaterials.2004.11.032. Epub 2005 Jan 11.
We examined whether transplantation of autologous bone marrow mononuclear cells (BM-MNCs) can augment neovascularization and bone regeneration of bone marrow in femoral bone defects of rabbits. Gelatin microspheres containing basic fibroblast growth factor (bFGF) were prepared for the controlled release of bFGF. To evaluate the in vivo effect of implanted BM-MNCs, we created bone defects in the rabbit medial femoral condyle, and implanted into them 5 x 10(6) fluorescent-labeled autologous BM-MNCs together with gelatin microspheres containing 10 microg bFGF on an atelocollagen gel scaffold. The four experimental groups, which were Atelocollagen gel (Col), Col + 5 x 10(6) BM-MNCs, Col + 10 microg bFGF, and Col + 5 x 10(6) BM-MNCs + 10 microg bFGF, were implanted into the sites of the prepared defects using Atelocollagen gel as a scaffold. The autologous BM-MNCs expressed CD31, an endothelial lineage cell marker, and induced efficient neovascularization at the implanted site 2 weeks after implantation. Capillary density in Col + BM-MNCs + bFGF was significantly large compared with other groups. This combination also enhanced regeneration of the bone defect after 8 weeks to a significantly greater extent than either BM-MNCs or bFGF on their own. In summary, these findings demonstrate that a combination of BM-MNCs and bFGF gelatin hydrogel enhance the neovascularization and the osteoinductive ability, resulting in bone regeneration.
我们研究了自体骨髓单个核细胞(BM-MNCs)移植是否能促进兔股骨骨缺损处骨髓的新血管形成和骨再生。制备了含碱性成纤维细胞生长因子(bFGF)的明胶微球用于bFGF的控释。为评估植入的BM-MNCs的体内效果,我们在兔股骨内侧髁制造骨缺损,并将5×10⁶个荧光标记的自体BM-MNCs与含10μg bFGF的明胶微球一起植入atelocollagen凝胶支架上。四个实验组,即atelocollagen凝胶(Col)组、Col + 5×10⁶ BM-MNCs组、Col + 10μg bFGF组和Col + 5×10⁶ BM-MNCs + 10μg bFGF组,以atelocollagen凝胶为支架植入制备好的缺损部位。自体BM-MNCs表达内皮谱系细胞标志物CD31,并在植入后2周在植入部位诱导有效新血管形成。与其他组相比,Col + BM-MNCs + bFGF组的毛细血管密度显著更高。这种组合在8周后也比单独使用BM-MNCs或bFGF更显著地增强了骨缺损的再生。总之,这些发现表明BM-MNCs和bFGF明胶水凝胶的组合增强了新血管形成和骨诱导能力,从而促进骨再生。