Division of Regenerative Medicine, Department of Medicine, Loma Linda University School of Medicine, Loma Linda, CA 92350, USA.
Bone. 2013 Jan;52(1):133-44. doi: 10.1016/j.bone.2012.09.027. Epub 2012 Sep 29.
This study evaluated the role of osteocyte-derived insulin-like growth factor 1 (IGF-1) in developmental bone growth by assessing the bone phenotype of osteocyte Igf1 conditional knockout (KO) mice, generated by crossing the Dmp1-driven Cre-expressing transgenic mice with Igf1 floxed mice containing loxP sites that flank exon 4 of the Igf1 gene. The periosteal diameter of femurs of homozygous conditional KO mutants was 8-12% smaller than wild-type (WT) littermates. The conditional mutants had 14-20%, 10-21%, and 15-31% reduction in total, trabecular, and cortical bone mineral contents, respectively. However, there were no differences in the total, trabecular, or cortical bone mineral densities, or in trabecular bone volume, thickness, number, and separation at secondary spongiosa between the mutants and WT littermates. The conditional KO mutants showed reduction in dynamic bone formation parameters at both periosteal and endosteal surfaces at the mid-diaphysis and in trabecular bone formation rate and resorption parameters at secondary spongiosa. The lower plasma levels of PINP and CTx in conditional KO mice support a regulatory role of osteocyte-derived IGF-1 in the bone turnover. The femur length of conditional KO mutants was 4-7% shorter due to significant reduction in the length of growth plate and hypertropic zone. The effect on periosteal expansion appeared to be bigger than that on longitudinal bone growth. The conditional KO mice had 14% thinner calvaria than WT littermates, suggesting that deficient osteocyte IGF-1 production also impairs developmental growth of intramembraneous bone. Conditional disruption of Igf1 in osteocytes did not alter plasma levels of IGF-1, calcium, or phosphorus. In summary, this study shows for the first time that osteocyte-derived IGF-1 plays an essential role in regulating bone turnover during developmental bone growth.
这项研究通过评估成骨细胞衍生的胰岛素样生长因子 1(IGF-1)在发育性骨生长中的作用,来评估 Dmp1 驱动的 Cre 表达转基因小鼠与 Igf1 基因exon4 侧翼带有 loxP 位点的 Igf1 基因 floxed 小鼠杂交产生的成骨细胞 Igf1 条件性敲除(KO)小鼠的骨骼表型。同窝野生型(WT)对照相比,纯合条件性 KO 突变体的股骨骺外径小 8-12%。条件性突变体的总骨、小梁骨和皮质骨矿物质含量分别减少 14-20%、10-21%和 15-31%。然而,在突变体和 WT 同窝对照之间,总骨、小梁骨或皮质骨密度,或次级松质骨的小梁骨体积、厚度、数量和分离没有差异。条件性 KO 突变体在骨干中段的骨表面和骨内膜均表现出动态骨形成参数减少,以及在次级松质骨的骨形成率和吸收参数减少。条件性 KO 小鼠的血浆 PINP 和 CTx 水平降低,支持成骨细胞衍生的 IGF-1 在骨转换中的调节作用。由于生长板和肥大区长度的显著减少,条件性 KO 突变体的股骨长度缩短了 4-7%。骨膜扩张的影响似乎大于对纵向骨生长的影响。条件性 KO 小鼠的颅骨比 WT 同窝对照薄 14%,这表明成骨细胞 IGF-1 产生不足也会损害膜内骨的发育性生长。成骨细胞中 Igf1 的条件性破坏并未改变 IGF-1、钙或磷的血浆水平。总之,这项研究首次表明,成骨细胞衍生的 IGF-1 在调节发育性骨生长期间的骨转换中发挥着重要作用。