Department of Biomedical Engineering, The University of Michigan, Ann Arbor, MI 48109-1078, USA.
Ann Biomed Eng. 2010 Apr;38(4):1607-17. doi: 10.1007/s10439-009-9881-0. Epub 2009 Dec 24.
Biglycan (bgn)-deficient mice (KO) have defective osteoblasts which lead to changes in the amount and quality of bone. Altered tissue strength in C57BL6/129 (B6;129) KO mice, a property which is independent of tissue quantity, suggests that deficiencies in tissue quality are responsible. However, the response to bgn-deficiency is inbred strain-specific. Mechanical loading influences bone matrix quality in addition to any increase in bone mass or change in bone formation activity. Since many diseases influence the mechanical integrity of bone through altered tissue quality, loading may be a way to prevent and treat extracellular matrix deficiencies. C3H/He (C3H) mice consistently have a less vigorous response to mechanical loading vs. other inbred strains. It was therefore hypothesized that the bones from both wild type (WT) and KO B6;129 mice would be more responsive to exercise than the bones from C3H mice. To test these hypotheses at 11 weeks of age, following 21 consecutive days of exercise, we investigated cross-sectional geometry, mechanical properties, and tissue composition in the tibiae of male mice bred on B6;129 and C3H backgrounds. This study demonstrated inbred strain-specific compositional and mechanical changes following exercise in WT and KO mice, and showed evidence of genotype-specific changes in bone in response to loading in a gene disruption model. This study further shows that exercise can influence bone tissue composition and/or mechanical integrity without changes in bone geometry. Together, these data suggest that exercise may represent a possible means to alter tissue quality and mechanical deficiencies caused by many diseases of bone.
聚糖蛋白聚糖(bgn)缺乏的小鼠(KO)成骨细胞功能缺陷,导致骨量和骨质量发生变化。C57BL6/129(B6;129)KO 小鼠组织强度发生改变,这种特性独立于组织量,提示组织质量缺陷是其原因。然而,bgn 缺乏的反应在近交系中具有特异性。机械加载除了增加骨量或改变骨形成活性外,还会影响骨基质质量。由于许多疾病通过改变组织质量影响骨的机械完整性,因此加载可能是预防和治疗细胞外基质缺陷的一种方法。C3H/He(C3H)小鼠对机械加载的反应始终比其他近交系更为强烈。因此,假设 B6;129 野生型(WT)和 KO 小鼠的骨骼对运动的反应会比 C3H 小鼠的骨骼更为敏感。为了在 11 周龄时测试这些假设,在连续 21 天的运动后,我们研究了 B6;129 和 C3H 背景下雄性小鼠胫骨的横截面几何形状、机械性能和组织组成。该研究表明,在 WT 和 KO 小鼠中,运动后会出现近交系特异性的组成和机械变化,并在基因敲除模型中为骨对加载的反应提供了基因型特异性变化的证据。该研究进一步表明,运动可以影响骨组织组成和/或机械完整性,而不会改变骨几何形状。综上所述,这些数据表明,运动可能是改变许多骨骼疾病引起的组织质量和机械缺陷的一种可行方法。