Machwate M, Zerath E, Holy X, Hott M, Godet D, Lomri A, Marie P J
INSERM Unité 349, Cell and Molecular Biology of Bone and Cartilage, Lariboisiere Hospital, Paris, France.
J Clin Invest. 1995 Sep;96(3):1245-53. doi: 10.1172/JCI118158.
We investigated the effect of recombinant human transforming growth factor beta 2 (rhTGF-beta 2) administration on trabecular bone loss induced by unloading in rats. Hind limb suspension for 14 d inhibited bone formation and induced osteopenia as shown by decreased bone volume, calcium and protein contents in long bone metaphysis. Systemic infusion of rhTFG-beta 2 (2 micrograms/kg per day) maintained normal bone formation rate, and prevented the decrease in bone volume, bone mineral content, trabecular thickness and number induced by unloading. In vitro analysis of tibial marrow stromal cells showed that rhTGF-beta 2 infusion in unloaded rats increased the proliferation of osteoblast precursor cells, but did not affect alkaline phosphatase activity or osteocalcin production. Northern blot analysis of RNA extracted from the femoral metaphysis showed that rhTGF-beta 2 infusion in unloaded rats increased steady-state levels of type I collagen mRNA but not alkaline phosphatase mRNA levels. rhTGF-beta 2 infusion at the dose used had no effect on metaphyseal bone volume and formation, osteoblast proliferation or collagen expression in control rats. The results show that systemic administration of rhTGF-beta 2 enhances osteoblast precursor cell proliferation and type I collagen expression by osteoblasts, and prevents the impaired bone formation and osteopenia induced by unloading.
我们研究了重组人转化生长因子β2(rhTGF-β2)给药对大鼠去负荷诱导的小梁骨丢失的影响。如长骨 metaphysis 中骨体积、钙和蛋白质含量降低所示,后肢悬吊14天抑制了骨形成并导致骨质减少。全身输注 rhTFG-β2(每天2微克/千克)维持了正常的骨形成率,并防止了去负荷诱导的骨体积、骨矿物质含量、小梁厚度和数量的减少。对胫骨骨髓基质细胞的体外分析表明,在去负荷大鼠中输注 rhTGF-β2 增加了成骨细胞前体细胞的增殖,但不影响碱性磷酸酶活性或骨钙素的产生。对从股骨 metaphysis 提取的 RNA 进行 Northern 印迹分析表明,在去负荷大鼠中输注 rhTGF-β2 增加了 I 型胶原蛋白 mRNA 的稳态水平,但不影响碱性磷酸酶 mRNA 水平。以所用剂量输注 rhTGF-β2 对对照大鼠的 metaphysis 骨体积和形成、成骨细胞增殖或胶原蛋白表达没有影响。结果表明,全身给予 rhTGF-β2 可增强成骨细胞前体细胞的增殖和成骨细胞的 I 型胶原蛋白表达,并防止去负荷诱导的骨形成受损和骨质减少。