Division of Endocrinology, Diabetes and Bone Disease, Mount Sinai School of Medicine, New York, New York, United States of America.
PLoS One. 2011 Mar 18;6(3):e14762. doi: 10.1371/journal.pone.0014762.
Insulin-like growth factor-1 (IGF-1) plays a critical role in the development of the growing skeleton by establishing both longitudinal and transverse bone accrual. IGF-1 has also been implicated in the maintenance of bone mass during late adulthood and aging, as decreases in serum IGF-1 levels appear to correlate with decreases in bone mineral density (BMD). Although informative, mouse models to date have been unable to separate the temporal effects of IGF-1 depletion on skeletal development. To address this problem, we performed a skeletal characterization of the inducible LID mouse (iLID), in which serum IGF-1 levels are depleted at selected ages. We found that depletion of serum IGF-1 in male iLID mice prior to adulthood (4 weeks) decreased trabecular bone architecture and significantly reduced transverse cortical bone properties (Ct.Ar, Ct.Th) by 16 weeks (adulthood). Likewise, depletion of serum IGF-1 in iLID males at 8 weeks of age, resulted in significantly reduced transverse cortical bone properties (Ct.Ar, Ct.Th) by 32 weeks (late adulthood), but had no effect on trabecular bone architecture. In contrast, depletion of serum IGF-1 after peak bone acquisition (at 16 weeks) resulted in enhancement of trabecular bone architecture, but no significant changes in cortical bone properties by 32 weeks as compared to controls. These results indicate that while serum IGF-1 is essential for bone accrual during the postnatal growth phase, depletion of IGF-1 after peak bone acquisition (16 weeks) is compartment-specific and does not have a detrimental effect on cortical bone mass in the older adult mouse.
胰岛素样生长因子 1(IGF-1)在生长骨骼的发育中起着关键作用,通过建立纵向和横向的骨积累来实现。IGF-1 也被认为在成年后期和衰老过程中维持骨量,因为血清 IGF-1 水平的下降似乎与骨密度(BMD)的下降相关。尽管如此,迄今为止,小鼠模型仍无法分离 IGF-1 耗竭对骨骼发育的时间效应。为了解决这个问题,我们对可诱导 LID 小鼠(iLID)进行了骨骼特征分析,在该模型中,血清 IGF-1 水平在选定的年龄被耗尽。我们发现,成年前(4 周)耗尽雄性 iLID 小鼠的血清 IGF-1 会降低小梁骨结构,并在 16 周(成年期)显著降低横向皮质骨特性(Ct.Ar、Ct.Th)。同样,在 8 周龄时耗尽 iLID 雄性小鼠的血清 IGF-1,会导致 32 周(成年后期)时横向皮质骨特性(Ct.Ar、Ct.Th)显著降低,但对小梁骨结构没有影响。相比之下,在峰值骨获取(16 周)后耗尽血清 IGF-1 会增强小梁骨结构,但与对照组相比,32 周时皮质骨特性没有显著变化。这些结果表明,虽然血清 IGF-1 是骨量积累在出生后生长阶段所必需的,但在峰值骨获取(16 周)后耗尽 IGF-1 是特定于隔室的,不会对老年小鼠的皮质骨量产生不利影响。