Carriero Alessandra, Javaheri Behzad, Bassir Kazeruni Neda, Pitsillides Andrew A, Shefelbine Sandra J
Department of Biomedical Engineering The City College of New York New York NY USA.
School of Mathematics, Computer Science and Engineering, City University of London London UK.
JBMR Plus. 2021 Feb 16;5(3):e10467. doi: 10.1002/jbm4.10467. eCollection 2021 Mar.
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adaptation is coordinated and why potential for adaptation adjusts during the life course. Previous animal models have suggested strain as the mechanical stimulus for bone adaptation, but yet it is unknown how mouse cortical bone load-related strains vary with age and sex. In this study, full-field strain maps (at 1 N increments up to 12 N) on the bone surface were measured in young, adult, and old (aged 10, 22 weeks, and 20 months, respectively), male and female C57BL/6J mice with load applied using a noninvasive murine tibial model. Strain maps indicate a nonuniform strain field across the tibial surface, with axial compressive loads resulting in tension on the medial side of the tibia because of its curved shape. The load-induced surface strain patterns and magnitudes show sexually dimorphic changes with aging. A comparison of the average and peak tensile strains indicates that the magnitude of strain at a given load generally increases during maturation, with tibias in female mice having higher strains than in males. The data further reveal that postmaturation aging is linked to sexually dimorphic changes in average and maximum strains. The strain maps reported here allow for loading male and female C57BL/6J mouse legs in vivo at the observed ages to create similar increases in bone surface average or peak strain to more accurately explore bone mechano-adaptation differences with age and sex. © 2021 The Authors. published by Wiley Periodicals LLC. on behalf of American Society for Bone and Mineral Research.
骨骼会根据所承受的负荷调整其结构;然而,骨骼的力学适应性是如何协调的,以及为什么适应潜力会在生命过程中发生变化,目前仍不清楚。以往的动物模型表明应变是骨骼适应的机械刺激因素,但尚不清楚小鼠皮质骨负荷相关应变如何随年龄和性别而变化。在本研究中,使用非侵入性小鼠胫骨模型对年轻、成年和老年(分别为10周龄、22周龄和20月龄)的雄性和雌性C57BL/6J小鼠施加负荷,测量了骨表面的全场应变图(以1 N的增量增加至12 N)。应变图表明胫骨表面的应变场不均匀,由于胫骨呈弯曲形状,轴向压缩负荷会导致胫骨内侧受拉。负荷诱导的表面应变模式和大小随年龄增长呈现出性别差异。对平均拉伸应变和峰值拉伸应变的比较表明,在成熟过程中,给定负荷下的应变大小通常会增加,雌性小鼠胫骨的应变高于雄性。数据进一步显示,成熟后衰老与平均应变和最大应变的性别差异变化有关。本文报道的应变图允许在观察到的年龄对雄性和雌性C57BL/6J小鼠腿部进行体内加载,以在骨表面产生类似的平均应变或峰值应变增加,从而更准确地探究骨骼力学适应性随年龄和性别的差异。© 2021作者。由Wiley Periodicals LLC代表美国骨与矿物质研究学会出版。