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Cdc2参与大鼠运动训练增强的轴突再生。

Involvement of Cdc2 in axonal regeneration enhanced by exercise training in rats.

作者信息

Seo Tae Beom, Han In Sun, Yoon Jin-Hwan, Hong Kwon-Eui, Yoon Sung-Jin, Namgung Uk

机构信息

Department of Oriental Medicine, Daejeon University, Daejeon, Korea.

出版信息

Med Sci Sports Exerc. 2006 Jul;38(7):1267-76. doi: 10.1249/01.mss.0000227311.00976.68.

Abstract

PURPOSE

Physical activity can improve sensorimotor recovery after peripheral nerve injury. We examined the effects of treadmill training (TMT) on axonal regeneration in the injured sciatic nerve of the rat and further investigated cellular and molecular events that underlie enhanced axonal regrowth by training.

METHODS

After crush injury of the sciatic nerves, rats were randomly assigned into either TMT or sedentary groups. Three to 14 d after injury, changes in protein levels in the regenerating nerve were analyzed by Western blotting and immunofluorescence staining. Axonal regeneration was assessed by anterograde and retrograde tracing techniques. The animals' functional recovery was determined by the sciatic functional index.

RESULTS

We identified enhanced axonal regrowth in the distal stump of the sciatic nerve 7-14 d after injury in the rats with TMT. Cell division cycle 2 (Cdc2) mRNA and protein levels were highly increased in the injured sciatic nerves 3 and 7 d after injury, and decreased to basal levels 14 d later. Daily TMT accelerated distal shift of Cdc2 mRNA and protein induced in the regenerating nerves, and Cdc2 kinase activity was similarly increased in the distal stump by TMT. Cdc2 protein induced by TMT was mainly colocalized with Schwann cell marker S100beta protein, and correlated with axial distribution pattern of bromodeoxyuridine-labeled proliferating cell population in the regenerating nerve. We further demonstrate that axonal regeneration and motor function recovery after injury, both of which were promoted by TMT, were greatly suppressed by in vivo administration of Cdc2 inhibitor roscovitine.

CONCLUSION

The present data suggest that Cdc2 kinase activated in the regenerating sciatic nerve may play an important role in TMT-mediated enhancement of axonal regeneration.

摘要

目的

体育活动可改善周围神经损伤后的感觉运动恢复。我们研究了跑步机训练(TMT)对大鼠坐骨神经损伤后轴突再生的影响,并进一步探究了训练促进轴突再生增强的细胞和分子机制。

方法

坐骨神经挤压伤后,将大鼠随机分为TMT组或久坐组。损伤后3至14天,通过蛋白质免疫印迹和免疫荧光染色分析再生神经中蛋白质水平的变化。通过顺行和逆行示踪技术评估轴突再生。通过坐骨神经功能指数测定动物的功能恢复情况。

结果

我们发现,TMT组大鼠损伤后7至14天,坐骨神经远侧断端的轴突再生增强。损伤后3天和7天,损伤坐骨神经中细胞分裂周期蛋白2(Cdc2)的mRNA和蛋白质水平显著升高,14天后降至基础水平。每日TMT加速了再生神经中Cdc2 mRNA和蛋白质向远侧的转移,TMT同样使远侧断端的Cdc2激酶活性增加。TMT诱导的Cdc2蛋白主要与雪旺细胞标志物S100β蛋白共定位,并与再生神经中溴脱氧尿苷标记的增殖细胞群的轴向分布模式相关。我们进一步证明,TMT促进的损伤后轴突再生和运动功能恢复,在体内给予Cdc2抑制剂roscovitine后受到极大抑制。

结论

目前的数据表明,再生坐骨神经中激活的Cdc2激酶可能在TMT介导的轴突再生增强中起重要作用。

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