Wan Chao, Gilbert Shawn R, Wang Ying, Cao Xuemei, Shen Xing, Ramaswamy Girish, Jacobsen Kimberly A, Alaql Zainab S, Eberhardt Alan W, Gerstenfeld Louis C, Einhorn Thomas A, Deng Lianfu, Clemens Thomas L
Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Proc Natl Acad Sci U S A. 2008 Jan 15;105(2):686-91. doi: 10.1073/pnas.0708474105. Epub 2008 Jan 9.
The hypoxia-inducible factor-1alpha (HIF-1alpha) pathway is the central regulator of adaptive responses to low oxygen availability and is required for normal skeletal development. Here, we demonstrate that the HIF-1alpha pathway is activated during bone repair and can be manipulated genetically and pharmacologically to improve skeletal healing. Mice lacking pVHL in osteoblasts with constitutive HIF-1alpha activation in osteoblasts had markedly increased vascularity and produced more bone in response to distraction osteogenesis, whereas mice lacking HIF-1alpha in osteoblasts had impaired angiogenesis and bone healing. The increased vascularity and bone regeneration in the pVHL mutants were VEGF dependent and eliminated by concomitant administration of VEGF receptor antibodies. Small-molecule inhibitors of HIF prolyl hydroxylation stabilized HIF/VEGF production and increased angiogenesis in vitro. One of these molecules (DFO) administered in vivo into the distraction gap increased angiogenesis and markedly improved bone regeneration. These results identify the HIF-1alpha pathway as a critical mediator of neoangiogenesis required for skeletal regeneration and suggest the application of HIF activators as therapies to improve bone healing.
缺氧诱导因子-1α(HIF-1α)通路是对低氧可用性适应性反应的核心调节因子,是正常骨骼发育所必需的。在此,我们证明HIF-1α通路在骨修复过程中被激活,并且可以通过基因和药理学手段进行调控以促进骨骼愈合。成骨细胞中缺乏pVHL且成骨细胞中HIF-1α持续激活的小鼠,在牵张成骨反应中血管生成显著增加且生成更多骨组织,而成骨细胞中缺乏HIF-1α的小鼠血管生成受损且骨愈合受到影响。pVHL突变体中血管生成增加和骨再生是VEGF依赖性的,并通过同时给予VEGF受体抗体而消除。HIF脯氨酰羟化的小分子抑制剂可稳定HIF/VEGF的产生并在体外增加血管生成。其中一种分子(DFO)在体内注入牵张间隙可增加血管生成并显著改善骨再生。这些结果表明HIF-1α通路是骨骼再生所需的新生血管生成的关键介质,并提示应用HIF激活剂作为改善骨愈合的治疗方法。