Department of Orthopaedic Surgery, Saint Louis University, St. Louis, MO, United States of America.
Department of Orthopaedics, Washington University in St. Louis, St. Louis, MO, United States of America.
Bone. 2021 Sep;150:116002. doi: 10.1016/j.bone.2021.116002. Epub 2021 May 8.
Clinical studies have come to conflicting conclusions regarding BMP2 deficiency's link to regulating bone mass and increasing fracture risk. This may be due to the signaling protein having sex- or age-dependent effects. Previous pre-clinical studies have supported a role, but have not adequately determined the physical mechanism causing altered bulk material properties. This study investigated the physical effects of Bmp2 ablation from osteogenic lineage cells (Osx-Cre; Bmp2) in 10- and 15-week-old male and female mice. Bones collected post-mortem were subjected to fracture toughness testing, reference point indentation testing, microCT, and histological analysis to determine the multi-scale relationships between mechanical/material behavior and collagen production, collagen organization, and bone architecture. BMP2-deficient bones were smaller, more brittle, and contained more lacunae-scale voids and cortical pores. The cellular density was significantly increased and there were material-level differences measured by reference point indentation, independently of collagen fiber alignment or organization. The disparities in bone size and in bone fracture toughness between genotypes were especially striking in males at 15-weeks-old. Together, this study suggests that there are sex- and age-dependent effects of BMP2 deficiency. The results from both sexes also warrant further investigation into BMP2 deficiency's role in osteoblasts' transition to osteocytes and overall bone porosity.
临床研究得出了相互矛盾的结论,即 BMP2 缺乏与调节骨量和增加骨折风险之间的关系。这可能是由于信号蛋白具有性别或年龄依赖性的影响。以前的临床前研究支持其作用,但尚未充分确定导致改变整体材料性能的物理机制。本研究调查了成骨谱系细胞(Osx-Cre;Bmp2)中 Bmp2 缺失对 10 至 15 周龄雄性和雌性小鼠的物理影响。死后收集的骨骼进行断裂韧性测试、参考点压痕测试、microCT 和组织学分析,以确定机械/材料性能与胶原产生、胶原组织和骨结构之间的多尺度关系。BMP2 缺乏的骨骼更小、更脆,并且含有更多的腔隙级空隙和皮质孔。细胞密度显著增加,并且通过参考点压痕测量到材料水平的差异,独立于胶原纤维排列或组织。在 15 周龄的雄性中,基因型之间在骨骼大小和骨骼断裂韧性方面的差异尤为明显。总的来说,这项研究表明 BMP2 缺乏存在性别和年龄依赖性的影响。来自两性的结果也需要进一步研究 BMP2 缺乏在成骨细胞向成骨细胞的转变以及整体骨多孔性中的作用。