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BDNF Met 等位基因携带者在实验诱导和使用依赖性可塑性后运动皮层兴奋性的差异调节。

Differential modulation of motor cortex excitability in BDNF Met allele carriers following experimentally induced and use-dependent plasticity.

机构信息

Discipline of Physiology, School of Medical Sciences, The University of Adelaide, Adelaide, SA, Australia.

出版信息

Eur J Neurosci. 2012 Sep;36(5):2640-9. doi: 10.1111/j.1460-9568.2012.08177.x. Epub 2012 Jun 13.

Abstract

The purpose of this study was to investigate how healthy young subjects with one of three variants of the brain-derived neurotrophic factor (BDNF) gene modulate motor cortex excitability following experimentally induced and use-dependent plasticity interventions. Electromyographic recordings were obtained from the right first dorsal interosseous (FDI) muscle of 12 Val/Val, ten Val/Met and seven Met/Met genotypes (aged 18-39 years). Transcranial magnetic stimulation of the left hemisphere was used to assess changes in FDI motor-evoked potentials (MEPs) following three separate interventions involving paired associative stimulation, a simple ballistic task and complex visuomotor tracking task using the index finger. Val/Val subjects increased FDI MEPs following all interventions (≥ 25%, P < 0.01), whereas the Met allele carriers only showed increased MEPs after the simple motor task (≥ 26%, P < 0.01). In contrast to the simple motor task, there was no significant change in MEPs for the Val/Met subjects (7%, P = 0.50) and a reduction in MEPs for the Met/Met group (-38%, P < 0.01) following the complex motor task. Despite these differences in use-dependent plasticity, the performance of both motor tasks was not different between BDNF genotypes. We conclude that modulation of motor cortex excitability is strongly influenced by the BDNF polymorphism, with the greatest differences observed for the complex motor task. We also found unique motor cortex plasticity in the rarest form of the BDNF polymorphism (Met/Met subjects), which may have implications for functional recovery after disease or injury to the nervous system in these individuals.

摘要

本研究旨在探讨三种脑源性神经营养因子(BDNF)基因变体之一的健康年轻受试者如何在实验诱导和使用依赖性可塑性干预后调节运动皮层兴奋性。从 12 名 Val/Val、10 名 Val/Met 和 7 名 Met/Met 基因型的右侧第一背骨间(FDI)肌肉中获得肌电图记录(年龄 18-39 岁)。使用经颅磁刺激左侧半球评估三个单独干预措施(涉及配对关联刺激、简单弹道任务和使用食指的复杂视觉运动跟踪任务)后 FDI 运动诱发电位(MEPs)的变化。Val/Val 受试者在所有干预措施后(≥25%,P<0.01)均增加了 FDI MEPs,而携带 Met 等位基因的受试者仅在简单运动任务后(≥26%,P<0.01)增加了 MEPs。与简单运动任务相反,Val/Met 受试者的 MEPs 没有显著变化(7%,P=0.50),而 Met/Met 组的 MEPs 减少(-38%,P<0.01)复杂运动任务后。尽管在使用依赖性可塑性方面存在这些差异,但 BDNF 基因型之间的两种运动任务的表现没有差异。我们得出结论,运动皮层兴奋性的调节受 BDNF 多态性的强烈影响,在复杂运动任务中观察到最大差异。我们还在 BDNF 多态性最罕见的形式(Met/Met 受试者)中发现了独特的运动皮层可塑性,这可能对这些个体的神经系统疾病或损伤后的功能恢复有影响。

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