首页> 外文期刊>Bone >32 wk old C3H/HeJ mice actively respond to mechanical loading.
【24h】

32 wk old C3H/HeJ mice actively respond to mechanical loading.

机译:32周龄的C3H / HeJ小鼠积极响应机械负荷。

获取原文
获取原文并翻译 | 示例
           

摘要

Numerous studies indicate that C3H/HeJ (C3H) mice are mildly responsive to mechanical loading compared to C57BL/6J (C57) mice. Guided by data indicating high baseline periosteal osteoblast activity in 16 wk C3H mice, we speculated that simply allowing the C3H mice to age until basal periosteal bone formation was equivalent to that of 16 wk C57 mice would restore mechanoresponsiveness in C3H mice. We tested this hypothesis by subjecting the right tibiae of 32 wk old C3H mice and 16 wk old C57 mice to low magnitude rest-inserted loading (peak strain: 1235 mu epsilon) and then exposing the right tibiae of 32 wk C3H mice to low (1085 mu epsilon) or moderate (1875 mu epsilon) magnitude cyclic loading. The osteoblastic response to loading on the endocortical and periosteal surfaces was evaluated via dynamic histomorphometry. At 32 wk of age, C3H mice responded to low magnitude rest-inserted loading with significantly elevated periosteal mineralizing surface, mineral apposition rate and bone formation compared to unloaded contralateral bones. Surprisingly, the periosteal bone formation induced by low magnitude rest-inserted loading in C3H mice exceeded that induced in 16 wk C57 mice. At 32 wk of age, C3H mice also demonstrated an elevated response to increased magnitudes of cyclic loading. We conclude that a high level of basal osteoblast function in 16 wk C3H mice appears to overwhelm the ability of the tissue to respond to an otherwise anabolic mechanical loading stimulus. However, when basal surface osteoblast activity is equivalent to that of 16 wk C57 mice, C3H mice demonstrate a clear ability to respond to either rest-inserted or cyclic loading.
机译:大量研究表明,与C57BL / 6J(C57)小鼠相比,C3H / HeJ(C3H)小鼠对机械负荷反应较轻。通过数据表明在16周的C3H小鼠中有较高的基线骨膜成骨细胞活性,我们推测仅允许C3H小鼠衰老直到基底周骨的骨形成与16周的C57小鼠的骨形成等同,就可以恢复C3H小鼠的机械反应性。我们通过对32周龄C3H小鼠和16周龄C57小鼠的右胫骨进行低强度静息负荷治疗(峰值应变:1235μepsilon),然后将32周龄C3H小鼠的右胫骨暴露于低( 1085亩epsilon)或中等(1875亩epsilon)大小的循环加载。通过动态组织形态学评估成骨细胞对皮层和骨膜表面负荷的反应。与未加载的对侧骨骼相比,在32周龄时,C3H小鼠对低强度的静息负荷反应具有明显升高的骨膜矿化表面,矿物沉积率和骨骼形成。令人惊讶的是,在C3H小鼠中低强度的静止插入负荷诱导的骨膜骨形成超过了在16周龄C57小鼠中诱导的骨膜骨形成。在32周龄时,C3H小鼠还表现出对周期性负荷增加的反应。我们得出的结论是,在16周的C3H小鼠中,高水平的基础成骨细胞功能似乎压倒了组织对其他合成代谢机械负荷刺激作出反应的能力。但是,当基底表面成骨细胞的活性与16周龄的C57小鼠的相等时,C3H小鼠表现出明显的能力,可以响应静止插入或循环加载。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号