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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Enhanced but fragile inhibition in the dentate gyrus in vivo in the kainic acid model of temporal lobe epilepsy: a study using current source density analysis.
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Enhanced but fragile inhibition in the dentate gyrus in vivo in the kainic acid model of temporal lobe epilepsy: a study using current source density analysis.

机译:在颞叶癫痫的海藻酸模型中,在齿状回体内增强但脆弱的抑制作用:一项使用电流源密度分析的研究。

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摘要

Temporal lobe epilepsy is related to many structural and physiological changes in the brain. We used kainic acid in rats as an animal model of temporal lobe epilepsy, and studied the neural interactions of the dentate gyrus in urethane-anesthetized rats in vivo. Our initial hypothesis was that sprouting of mossy fibers, the axons of the granule cells, increases proximal dendritic excitatory currents in the inner molecular layer of the dentate gyrus. Extracellular currents were detected in vivo using current source density analysis. Backfiring the mossy fibers in CA3 or orthodromic excitation of the granule cells through the medial perforant path induced a current sink at the inner molecular layer. However, the sink or inferred excitation at the inner molecular layer was not increased in kainic acid-treated rats and the sink actually correlated negatively with the degree of mossy fiber sprouting. It is inferred that the latter sink was mediated mainly by association fibers and not by recurrent mossy fibers. After kainic acid treatment, paired-pulse inhibition of the population spikes in the dentate gyrus was increased. In contrast, reverberant activity that involved looping around an entorhinal-hippocampal circuit was increased in kainic acid-treated rats, compared to control rats. The increase of inhibition in kainic acid-treated rats was readily blocked by a small dose of GABA(A) receptor antagonist bicuculline. The latter dose of bicuculline induced paroxsymal spike bursts in kainic acid-treated but not control rats, demonstrating that the increased inhibition in dentate gyrus was fragile.In conclusion, after kainic acid induced seizures, the dentate gyrus in vivo showed an increase in inhibition that appeared to be fragile. The hypothesized increase in proximal dendritic excitation due to mossy fiber sprouting was not detected. However, the fragile inhibition could explain the seizure susceptibility in patients with temporal lobe epilepsy.
机译:颞叶癫痫与大脑中许多结构和生理变化有关。我们在大鼠中使用海藻酸作为颞叶癫痫的动物模型,并研究了氨基甲酸乙酯麻醉大鼠体内齿状回的神经相互作用。我们最初的假设是,长满苔藓的纤维(即颗粒细胞的轴突)的发芽会增加齿状回内分子层的近端树突状兴奋电流。使用电流源密度分析在体内检测到细胞外电流。在CA3中对生苔纤维进行回火,或通过内侧穿孔路径对颗粒细胞进行正交刺激,从而在内分子层上引起电流吸收。然而,在海藻酸处理的大鼠中,内分子层的沉陷或推断的激发没有增加,并且沉陷实际上与苔藓纤维发芽的程度呈负相关。据推测,后者的下沉主要是由缔合纤维而不是由复发性苔藓纤维介导的。海藻酸处理后,对齿状回的种群峰值的成对脉冲抑制作用增强。相反,与海藻酸治疗的大鼠相比,与海藻酸治疗的大鼠相比,涉及围绕内嗅海马回路循环的混响活性增加。用小剂量的GABA(A)受体拮抗剂bicuculline可以容易地阻止海因酸治疗大鼠的抑制作用增加。后一剂双小分子诱导的海藻酸治疗但不是对照组的大鼠发作性阵发性尖峰爆发,表明对齿状回的抑制作用增强是脆弱的。总之,在海藻酸诱导的癫痫发作后,体内的齿状回表现出抑制作用的增加,即似乎很脆弱。未检测到由于生苔纤维发芽而导致的近端树突状兴奋的假设增加。然而,脆弱的抑制作用可以解释颞叶癫痫患者的癫痫发作敏感性。

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