Division of Regenerative Medicine, Department of Medicine, Loma Linda University School of Medicine, Loma Linda, CA 92350, USA.
Am J Physiol Endocrinol Metab. 2013 Jul 15;305(2):E271-81. doi: 10.1152/ajpendo.00092.2013. Epub 2013 May 28.
This study sought to determine whether deficient Igf1 expression in osteocytes would affect loading-induced osteogenic response. Tibias of osteocyte Igf1 conditional knockout (KO) mice (generated by cross-breeding Igf1 floxed mice with Dmp1-Cre transgenic mice) and wild-type (WT) littermates were subjected to four-point bending for 2 wk. Microcomputed tomography confirmed that the size of tibias of conditional mutants was smaller. Loading with an equivalent loading strain increased periosteal woven bone and endosteal lamellar bone formation in WT mice but not in conditional KO mice. Consistent with the lack of an osteogenic response, the loading failed to upregulate expression of early mechanoresponsive genes (Igf1, Cox-2, c-fos) or osteogenic genes (Cbfa-1, and osteocalcin) in conditional KO bones. The lack of osteogenic response was not due to reduced osteocyte density or insufficient loading strain. Deficient osteocyte Igf1 expression reduced the loading-induced upregulation of expression of canonical Wnt signaling genes (Wnt10b, Lrp5, Dkk1, sFrp2). The loading also reduced (by 40%) Sost expression in WT mice, but the loading not only did not reduce but upregulated (~1.5-fold) Sost expression in conditional KO mice. Conditional disruption of Igf1 in osteocytes also abolished the loading-induced increase in the bone β-catenin protein level. These findings suggest an impaired response in the loading-induced upregulation of the Wnt signaling in conditional KO mice. In summary, conditional disruption of Igf1 in osteocytes abolished the loading-induced activation of the Wnt signaling and the corresponding osteogenic response. In conclusion, osteocyte-derived IGF-I plays a key determining role in bone mechanosensitivity.
这项研究旨在确定成骨细胞中 IGF1 表达不足是否会影响加载诱导的成骨反应。通过将 IGF1 基因敲除(KO)小鼠(通过将 IGF1 基因敲除小鼠与 Dmp1-Cre 转基因小鼠杂交产生)与野生型(WT)同窝仔鼠的胫骨进行四点弯曲实验 2 周。微计算机断层扫描证实,条件性突变体的胫骨尺寸较小。在 WT 小鼠中,与加载应变等效的加载增加了骨膜编织骨和骨内膜板层骨的形成,但在条件性 KO 小鼠中则没有。与缺乏成骨反应一致的是,加载未能上调条件性 KO 骨中的早期机械反应基因(IGF1、COX-2、c-fos)或成骨基因(Cbfa-1 和骨钙素)的表达。缺乏成骨反应不是由于成骨细胞密度降低或加载应变不足所致。成骨细胞 IGF1 表达不足降低了加载诱导的经典 Wnt 信号通路基因(Wnt10b、LRP5、Dkk1、sFrp2)的表达上调。加载还降低了 WT 小鼠中 Sost 的表达(降低了 40%),但加载不仅没有降低,反而上调了条件性 KO 小鼠中 Sost 的表达(上调了约 1.5 倍)。成骨细胞中 IGF1 的条件性缺失也消除了加载诱导的骨 β-连环蛋白蛋白水平的增加。这些发现表明,在条件性 KO 小鼠中,加载诱导的 Wnt 信号上调反应受损。总之,成骨细胞中 IGF1 的条件性缺失消除了加载诱导的 Wnt 信号通路的激活和相应的成骨反应。总之,成骨细胞源性 IGF-I 在骨机械敏感性中起着关键的决定作用。