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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Nerve growth factor accelerates seizure development, enhances mossy fiber sprouting, and attenuates seizure-induced decreases in neuronal density in the kindling model of epilepsy.
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Nerve growth factor accelerates seizure development, enhances mossy fiber sprouting, and attenuates seizure-induced decreases in neuronal density in the kindling model of epilepsy.

机译:神经生长因子可加速癫痫发作模型中癫痫发作的发展,增强苔藓纤维的发芽并减轻癫痫发作引起的神经元密度的降低。

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Recurrent seizure activity induced during kindling has been reported to produce a functional synaptic reorganization of the mossy fibers in the hippocampus. To date, it is unclear whether this kindling-induced growth is secondary to decreases in hilar neuron density, which are presumed to reflect hilar neuronal cell loss, or whether it is related specifically to an activation-dependent plasticity. We recently demonstrated that blocking nerve growth factor (NGF) biological activity retards seizure development and inhibits the sprouting of mossy fibers. We now demonstrate that intraventricular administration of NGF itself accelerates the progression of kindling epileptogenesis, increases mossy fiber sprouting in the CA3 region and in the inner molecular layer (IML), but reduces seizure-induced decreases in hilar cell density. These findings provide support for a role of NGF in kindling and kindling-induced mossy fiber sprouting. In addition, the results dissociate this form of epileptogenesis from hilar cell loss or decreases in hilar cell density attributable to increases in hilar area, thereby supporting seizure-induced mossy fiber sprouting as being primarily attributable to the combined effects of neuronal activation and the activation-induced upregulation of growth factors.
机译:据报道,在点燃过程中诱发的反复发作性癫痫发作活动会在海马体中产生苔藓纤维的功能性突触重组。迄今为止,尚不清楚这种点燃诱导的生长是继发于肝门神经元密度的下降之后,而这种下降被认为反映了肝门神经元细胞的损失,或者是否与激活依赖性可塑性特别相关。我们最近证明,阻止神经生长因子(NGF)的生物活性可阻止癫痫发作的发展并抑制苔藓纤维的发芽。我们现在证明,NGF本身的脑室内给药可加速点燃性癫痫的发展,增加CA3区和内分子层(IML)的苔藓纤维出芽,但减少癫痫引起的肺门细胞密度降低。这些发现为NGF在点燃和点燃诱导的苔藓纤维萌发中的作用提供了支持。此外,结果将这种形式的癫痫发生与肺门细胞丢失或由于肺门面积增加而引起的肺门细胞密度降低分离开来,从而支持癫痫诱发的苔藓纤维发芽,这主要归因于神经元激活和激活-诱导生长因子的上调。

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