Tanner Sharon J, Hefferan Theresa E, Rosen Clifford J, Conover Cheryl A
Endocrine Research Unit, Department of Medicine, Mayo Clinic, Rochester, Minnesota, USA.
J Bone Miner Res. 2008 May;23(5):655-62. doi: 10.1359/jbmr.071210.
The metalloproteinase, pregnancy-associated plasma protein-A (PAPP-A) functions to enhance local insulin-like growth factor (IGF)-I bioavailability through cleavage of inhibitory IGF binding proteins. Because IGF-I is an important regulator of skeletal growth and remodeling and PAPP-A is highly expressed by osteoblastic cells, we hypothesized that, in the absence of PAPP-A, bone physiology would be compromised because of a blunting of local IGF-I action even in the presence of normal circulating IGF-I levels.
pQCT, muCT, histomorphometry, and mechanical strength testing were performed on bones from PAPP-A knockout (KO) mice and wildtype (WT) littermates at 2-12 mo of age. IGF-I levels and bone formation and resorption markers were determined in sera from these animals.
Volumetric BMD in PAPP-A KO mice measured by pQCT at the femoral midshaft, which is primarily cortical bone, was 10% less than WT at 2 mo. This difference was maintained at 4, 6, and 12 mo. Cortical thickness at this site was similarly decreased. On the other hand, trabecular bone at the distal femur (pQCT) and in the tibia (muCT) showed age-progressive decreases in bone volume fraction in PAPP-A KO compared with WT mice. Tibial muCT indicated a 46% relative decrease in trabecular bone volume/total volume (BV/TV) and a 28% relative decrease in trabecular thickness in PAPP-A KO compared with WT mice at 6 mo. These trabecular deficiencies in PAPP-A KO mice corresponded to a weakening of the bone. Serum markers and bone histomorphometry indicated that the primary impact of PAPP-A is on skeletal remodeling resulting in a state of low-turnover osteopenia in adult PAPP-A KO mice. Circulating IGF-I levels were not altered in PAPP-A KO mice.
PAPP-A is a bone growth regulatory factor in vivo and, in its absence, mice show skeletal insufficiency in mass, density, architecture, and strength. The data suggest a primary role for PAPP-A in modulating local IGF bioavailability for trabecular bone remodeling.
金属蛋白酶妊娠相关血浆蛋白-A(PAPP-A)通过裂解抑制性胰岛素样生长因子(IGF)结合蛋白来增强局部IGF-I的生物利用度。由于IGF-I是骨骼生长和重塑的重要调节因子,且PAPP-A在成骨细胞中高表达,我们推测,在缺乏PAPP-A的情况下,即使循环IGF-I水平正常,局部IGF-I作用减弱也会损害骨生理功能。
对2至12月龄的PAPP-A基因敲除(KO)小鼠和野生型(WT)同窝小鼠的骨骼进行外周定量计算机断层扫描(pQCT)、微观计算机断层扫描(muCT)、组织形态计量学和力学强度测试。测定这些动物血清中的IGF-I水平以及骨形成和骨吸收标志物。
通过pQCT测量,PAPP-A KO小鼠股骨干中段(主要为皮质骨)的骨体积密度在2月龄时比WT小鼠低10%。这种差异在4、6和12月龄时持续存在。该部位的皮质厚度也同样降低。另一方面,与WT小鼠相比,PAPP-A KO小鼠股骨远端(pQCT)和胫骨(muCT)的小梁骨骨体积分数随年龄增长而逐渐降低。胫骨muCT显示,与WT小鼠相比,PAPP-A KO小鼠在6月龄时小梁骨体积/总体积(BV/TV)相对降低46%,小梁厚度相对降低28%。PAPP-A KO小鼠的这些小梁骨缺陷与骨强度减弱相对应。血清标志物和骨组织形态计量学表明,PAPP-A的主要影响在于骨骼重塑,导致成年PAPP-A KO小鼠出现低转换型骨质减少状态。PAPP-A KO小鼠的循环IGF-I水平未发生改变。
PAPP-A是体内一种骨生长调节因子,在缺乏它的情况下,小鼠在骨量、密度、结构和强度方面表现出骨骼功能不全。数据表明PAPP-A在调节局部IGF生物利用度以进行小梁骨重塑方面起主要作用。