Beamer W G, Rosen C J, Bronson R T, Gu W, Donahue L R, Baylink D J, Richardson C C, Crawford G C, Barker J E
The Jackson Laboratory, Bar Harbor, ME 04609, USA.
Bone. 2000 Nov;27(5):619-26. doi: 10.1016/s8756-3282(00)00369-0.
A new mouse model of stage-specific bone growth failure and fracture has been recovered as an autosomal recessive mutation, designated spontaneous fracture (sfx). The sfx/sfx mice are phenotypically normal until shortly after weaning, when reduced mobility and impaired somatic growth are first noted. By 6 weeks of age, body, spleen, and thymus weights, as well as hematocrits and serum calcium, inorganic phosphate, total alkaline phosphatase, insulin-like growth factor-I, and osteocalcin levels are decreased. The sfx/sfx mice also show reduced femoral cortical density and diaphyseal circumference, as well as a paucity of mature osteoblasts on bone surfaces. Histological analyses of the femur and tibia in the mutants show subtle reduction of chondrocyte numbers in epiphyseal-plate columns, reduction of matrix, and near absence of osteoid below the differentiated chondrocytes. Trabeculae in proximal tibiae, iliacs, and vertebral bodies are sparse and thin. Cortical bone thickness of mutants is markedly thinned in all sites examined. By 7-8 weeks, radiographic films routinely show spontaneous impact fractures of the distal femur accompanied by callus formation, whereas complete fractures are less commonly observed. Volumetric bone mineral density (BMD) of mutant femurs is similar to +/? littermates in the center of the femoral diaphysis, but BMD declines as either end of the femoral diaphysis is approached. We have mapped the gene responsible for this phenotype to central Chromosome 14. Reduced bone mass, impaired bone formation, abnormalities of bone architecture, and a disposition to spontaneous fracture identify sfx/sfx mice as a useful model for understanding the mechanisms responsible for peripubertal bone formation.
一种新的特定阶段骨骼生长衰竭和骨折的小鼠模型已作为常染色体隐性突变被发现,命名为自发性骨折(sfx)。sfx/sfx小鼠在断奶后不久之前表型正常,此时首次注意到活动能力下降和躯体生长受损。到6周龄时,体重、脾脏和胸腺重量以及血细胞比容、血清钙、无机磷、总碱性磷酸酶、胰岛素样生长因子-I和骨钙素水平均下降。sfx/sfx小鼠还表现出股骨皮质密度和骨干周长降低,以及骨表面成熟成骨细胞数量稀少。对突变体的股骨和胫骨进行组织学分析显示,骨骺板柱中的软骨细胞数量略有减少,基质减少,分化软骨细胞下方几乎没有类骨质。胫骨近端、髂骨和椎体的小梁稀疏且薄。在所有检查部位,突变体的皮质骨厚度均明显变薄。到7-8周时,X线片通常显示股骨远端自发性撞击骨折并伴有骨痂形成,而完全骨折较少见。突变体股骨的体积骨密度(BMD)在股骨干中部与+/?同窝小鼠相似,但随着接近股骨干的任何一端,BMD都会下降。我们已将导致该表型的基因定位到中央染色体14。骨量减少、骨形成受损、骨结构异常以及自发性骨折倾向表明sfx/sfx小鼠是理解青春期前骨形成机制的有用模型。