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周期性牵张力对骨髓破骨细胞形成的影响
引用本文:李永明,林珠,张晓东,唐林. 周期性牵张力对骨髓破骨细胞形成的影响[J]. 临床口腔医学杂志, 2004, 20(12): 721-723
作者姓名:李永明  林珠  张晓东  唐林
作者单位:第四军医大学口腔医学院正畸科,陕西,西安,710032
基金项目:国家自然科学基金资助项目 (30 30 0 393)
摘    要:目的 :通过大鼠骨髓破骨细胞的体外诱导培养 ,观察不同时段周期性牵张力对骨髓破骨细胞形成的影响。方法 :通过体外细胞培养加载系统 ,选择频率为 6周 /min ,弹性基底膜发生 12 %形变率的周期性牵张力。试验共分为 4组 ,A组 :为对照组 ,在整个培养期间不加力 ;B组 :从培养的第 2d开始加力 ,连续加力 3d ;C组 :从培养的第 2d开始加力 ,连续加力 5d ;D组 :从培养的第 5d开始加力 ,连续加力 2d。每组各 6孔 ,均于培养的第 7d进行多核细胞计数。结果 :B组、C组多核细胞数量与对照组相比明显减少 (P <0 .0 5 ) ,而D组多核细胞数量与对照组相比无显著性差异 (P >0 .0 5 )。B组与C组相比亦无显著性差异。结论 :周期性牵张力主要是在骨髓诱导培养的早期抑制破骨细胞的形成 ,后期施力对破骨细胞的形成无明显影响。

关 键 词:口腔正畸  机械张力  骨髓细胞  破骨细胞
文章编号:1003-1634(2004)12-0721-03

Effects of the cyclic-tension force on the formation of osteoclast in rat bone marrow culture
LI Yong-ming,LIN Zhu,ZHANG Xiao-dong,TANG Lin. Effects of the cyclic-tension force on the formation of osteoclast in rat bone marrow culture[J]. Journal of Clinical Stomatology, 2004, 20(12): 721-723
Authors:LI Yong-ming  LIN Zhu  ZHANG Xiao-dong  TANG Lin
Affiliation:LI Yong-ming,LIN Zhu,ZHANG Xiao-dong,TANG Lin. Department of Orthodontic,College of Stomatology,The Fourth Military Medical University,Xi'an 710032,China
Abstract:Objective:To investigate the effect of the cyclic-tension force on the osteoclast formation in rat bone marrow culture, so as to learn about the mechanisms of bone remodeling under mechanical strain.Method:Osteoclast formation was assessed in marrow cultures plated on flexible membranes subjected to 12% elongation by strain unit at 6 cycles/min (i.e. 5-s elongation and 5-s relaxation) in different duration. Result: Cultures strained during days 2 through 7 inhibited osteoclast formation, a degree of inhibition similar to that observed when the cultures were subjected to strains during only days 2 through 4 but also evaluated on day 7. In contrast, straining of culture during days 5 through 7 had little influence on inhibiting the formation of osteoclast.Conclusion: the cyclic-tension force mainly in early stage inhibit the formation of osteoclast in rat bone marrow culture. The results suggest that mechanical strain must be considered as inhibitory to osteoclast recruitment.
Keywords:orthodontic  mechanical stress  bone marrow cells  osteoclast
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