首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >BDNF and GAP43 contribute to dynamic transhemispheric functional reorganization in rat brain after contralateral C7 root transfer following brachial plexus avulsion injuries.
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BDNF and GAP43 contribute to dynamic transhemispheric functional reorganization in rat brain after contralateral C7 root transfer following brachial plexus avulsion injuries.

机译:臂丛神经撕脱伤后,对侧C7根转移后,BDNF和GAP43促进了大鼠脑中半球半球的动态重组。

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摘要

It is known that contralateral seventh cervical nerve (C7) root transfer after brachial plexus avulsion injuries (BPAI) causes interhemispheric cortical functional reorganization. However, the potential mechanisms and the role of neurotrophic factors and/or growth-associated protein expression in the process of cerebral reorganization are not well understood. The present study identified the expression of brain-derived neurotrophic factor (BDNF) and growth-associated protein 43 (GAP43) mRNA in primary motor cortex after contralateral C7 root transfer following BPAI. BDNF and GAP43 mRNA levels were significantly increased in brain samples at both 6 and 9 months after contralateral C7 root transfer following BPAI, in comparison with the samples from the rats with BPAI only. These findings indicate that BDNF and GAP43 may play an important role during the dynamic transhemispheric functional reorganization.
机译:已知臂丛神经撕脱伤(BPAI)后对侧第七颈神经(C7)根转移会导致半球间皮层功能重组。但是,人们尚不清楚神经营养因子和/或生长相关蛋白表达在脑重组过程中的潜在机制和作用。本研究确定了BPAI后对侧C7根转移后原发性运动皮层中脑源性神经营养因子(BDNF)和生长相关蛋白43(GAP43)mRNA的表达。与仅使用BPAI的大鼠的样本相比,在BPAI进行对侧C7根转移后的6个月和9个月,脑样本中的BDNF和GAP43 mRNA水平显着增加。这些发现表明BDNF和GAP43可能在动态的跨半球功能重组中发挥重要作用。

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