首页> 外文OA文献 >Fatigue failure of osteocyte cellular processes: implications for the repair of bone.
【2h】

Fatigue failure of osteocyte cellular processes: implications for the repair of bone.

机译:骨细胞细胞过程的疲劳衰竭:对骨修复的影响。

摘要

The physical effects of fatigue failure caused by cyclic strain are important and for most materials well understood. However, nothing is known about this mode of failure in living cells. We developed a novel method that allowed us to apply controlled levels of cyclic displacement to networks of osteocytes in bone. We showed that under cyclic loading, fatigue failure takes place in the dendritic processes of osteocytes at cyclic strain levels as low as one tenth of the strain needed for instantaneous rupture. The number of cycles to failure was inversely correlated with the strain level. Further experiments demonstrated that these failures were not artefacts of our methods of sample preparation and testing, and that fatigue failure of cell processes also occurs in vivo. This work is significant as it is the first time it has been possible to conduct fatigue testing on cellular material of any kind. Many types of cells experience repetitive loading which may cause failure or damage requiring repair. It is clinically important to determine how cyclic strain affects cells and how they respond in order to gain a deeper understanding of the physiological processes stimulated in this manner. The more we understand about the natural repair process in bone the more targeted the intervention methods may become if disruption of the repair process occurred. Our results will help to understand how the osteocyte cell network is disrupted in the vicinity of matrix damage, a crucial step in bone remodelling.
机译:由循环应变引起的疲劳失效的物理影响是重要的,并且对于大多数材料而言,这是众所周知的。然而,对于活细胞的这种失败模式,一无所知。我们开发了一种新颖的方法,使我们能够将受控水平的循环位移应用于骨骼中骨细胞的网络。我们表明,在循环载荷下,疲劳破坏发生在骨细胞的树突状过程中,其循环应变水平低至瞬时破裂所需应变的十分之一。失效循环数与应变水平成反比。进一步的实验表明,这些失败不是我们的样品制备和测试方法的假象,并且细胞过程的疲劳失败也发生在体内。这项工作意义重大,因为这是首次对任何种类的多孔材料进行疲劳测试。许多类型的电池会承受反复的负载,这可能会导致故障或需要维修的损坏。确定循环应变如何影响细胞及其反应方式在临床上很重要,以便对以这种方式刺激的生理过程有更深入的了解。我们对骨骼的自然修复过程了解得越多,如果破坏修复过程,干预方法就可能变得更有针对性。我们的结果将有助于了解基质损伤附近骨细胞细胞网络是如何被破坏的,这是骨重塑的关键步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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