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大鼠丘脑底核电刺激期间频率参数对黑质和苍白球细胞外谷氨酸和γ-氨基丁酸的影响。

Influence of the frequency parameter on extracellular glutamate and gamma-aminobutyric acid in substantia nigra and globus pallidus during electrical stimulation of subthalamic nucleus in rats.

作者信息

Windels François, Bruet Nicolas, Poupard Annie, Feuerstein Claude, Bertrand Anne, Savasta Marc

机构信息

Equipe Neurochimie et Neuroplasticité Fonctionnelles, INSERM U.318--Neurosciences Précliniques, Université Joseph Fourier, Pavillon de Neurologie, CHU de Grenoble, France.

出版信息

J Neurosci Res. 2003 Apr 15;72(2):259-67. doi: 10.1002/jnr.10577.

Abstract

High-frequency stimulation (HFS) of the subthalamic nucleus (STN) proves to be an efficient treatment for alleviating motor symptoms in Parkinson's disease (PD). However, the mechanisms of HFS underlying these clinical effects remain unknown. Using intracerebral microdialysis, we previously reported that HFS induces, in normal rats, a significant increase of extracellular glutamate (Glu) in the globus pallidus (GP in rats or GPe in primates) and the substantia nigra pars reticulata (SNr), whereas gamma-aminobutyric acid (GABA) was increased only in the SNr. Bradykinesia can be improved by STN stimulation in a frequency-dependent manner, a plateau being reached around 130 Hz. The aim of the present study was to determine whether neurochemical changes are also frequency dependent. Electrical STN stimulation was applied at various frequencies (10, 60, 130, and 350 Hz) in normal rats. The results show that, for Glu, the amplitude of increase detected in GP and SNr is maximal at 130 Hz and is maintained at 350 Hz. No modifications of GABA were observed in GP whatever the frequency applied, whereas, in SNr, GABA increased from 60 to 350 Hz. Our results provide new neurochemical data implicating STN target structures in deep-brain-stimulation mechanisms.

摘要

丘脑底核高频刺激(HFS)被证明是缓解帕金森病(PD)运动症状的一种有效治疗方法。然而,HFS产生这些临床效果的机制仍不清楚。我们之前利用脑内微透析技术报道,在正常大鼠中,HFS可使苍白球(大鼠中的GP或灵长类动物中的GPe)和黑质网状部(SNr)的细胞外谷氨酸(Glu)显著增加,而仅SNr中的γ-氨基丁酸(GABA)增加。通过丘脑底核刺激可频率依赖性地改善运动迟缓,在130Hz左右达到平台期。本研究的目的是确定神经化学变化是否也具有频率依赖性。在正常大鼠中以不同频率(10、60、130和350Hz)施加丘脑底核电刺激。结果表明,对于Glu,在GP和SNr中检测到的增加幅度在130Hz时最大,并在350Hz时保持。无论施加何种频率,在GP中均未观察到GABA的变化,而在SNr中,GABA从60Hz增加到350Hz。我们的结果提供了新的神经化学数据,表明丘脑底核目标结构参与了脑深部刺激机制。

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