Fu Tsai-Sheng, Chen Wen-Jer, Chen Lih-Huei, Lin Song-Shu, Liu Shih-Jung, Ueng Steve W N
Department of Orthopaedic Surgery, Chang Gung Memorial Hospital, Chang Gung University, 5, Fu-Hsing Street, 333, Kweishan, Taoyuan, Taiwan.
J Orthop Res. 2009 Mar;27(3):380-4. doi: 10.1002/jor.20644.
We tested the hypothesis that the dose of recombinant human bone morphogenetic protein-2 (rhBMP-2) required to induce spine fusion can be reduced by combination with mesenchymal stem cells (MSCs). Twenty-four adult rabbits underwent posterolateral intertransverse fusion at the L4-L5 level. The animals were divided into four groups based on the implant material: autologous iliac graft, Alginate-MSCs composite, Alginate-BMP-2-MSCs composite, and Alginate-BMP-2 composite. After 16 weeks, the rabbits were euthanized for radiographic examination, manual palpation, biomechanical testing, and histology. Radiographic union of 12 intertransverse fusion areas for the autogenous iliac graft, Alginate-MSCs, Alginate-BMP-2-MSCs, and Alginate-BMP-2 groups was 11, 8, 11, and 0, respectively. Moreover, manual palpation of six fusion segments in each subgroup found solid union to be 6, 1, 5, and 0, respectively. The average torques at failure of the first three groups were 2278 +/- 135, 1943 +/- 140, and 2334 +/- 187 N-mm, respectively. The failure torque did not differ significantly between the autograft and Alginate-BMP-2-MSCs groups; both groups were significantly higher than the Alginate-MSCs group. The results indicate that MSCs delivered with in vitro cellular doses of rhBMP-2 are more osteoinductive than MSCs without rhBMP-2. In combination with MSCs, a low dose (2.5 microg) of rh-BMP-2 could enhance bone formation and posterolateral spine fusion success in the rabbit model.
通过与间充质干细胞(MSCs)联合使用,诱导脊柱融合所需的重组人骨形态发生蛋白-2(rhBMP-2)剂量可以降低。24只成年兔在L4-L5水平进行后外侧横突间融合术。根据植入材料将动物分为四组:自体髂骨移植、藻酸盐-MSCs复合物、藻酸盐-BMP-2-MSCs复合物和藻酸盐-BMP-2复合物。16周后,对兔子实施安乐死以进行放射学检查、手动触诊、生物力学测试和组织学检查。自体髂骨移植组、藻酸盐-MSCs组、藻酸盐-BMP-2-MSCs组和藻酸盐-BMP-2组的12个横突间融合区域的放射学融合情况分别为11、8、11和0。此外,对每个亚组的六个融合节段进行手动触诊发现,牢固融合分别为6、1、5和0。前三组的平均破坏扭矩分别为2278±135、1943±140和2334±187N·mm。自体移植组和藻酸盐-BMP-2-MSCs组之间的破坏扭矩无显著差异;两组均显著高于藻酸盐-MSCs组。结果表明,与不含rhBMP-2的MSCs相比,体外细胞剂量的rhBMP-2与MSCs联合使用时具有更强的骨诱导能力。在兔模型中,低剂量(2.5微克)的rh-BMP-2与MSCs联合使用可增强骨形成和后外侧脊柱融合成功率。