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Striatal Spine Plasticity in Parkinsons Disease

机译:帕金森氏病的纹状体脊柱可塑性

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摘要

Striatal dopamine (DA) denervation results in a significant loss of dendritic spines on medium spiny projection neurons in Parkinson's disease. In 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-treated parkinsonian monkeys, spines contacted either by cortical or thalamic glutamatergic terminals are severely affected on both direct and indirect striatofugal neurons. In rodents, indirect pathway neurons appear to be more sensitive, at least in early stages of acute dopamine denervation. The remaining corticostriatal and thalamostriatal axo-spinous synapses undergo complex ultrastructural remodeling consistent with increased synaptic activity in the DA-denervated primate striatum, which may explain the pathophysiological overactivity of the corticostriatal system reported in various animal models of parkinsonism. The calcium-mediated regulation of the transcription factor myocyte enhancer factor 2 was recognized as a possible underlying mechanism for striatal spine plasticity. Future studies to determine how alterations in striatal spine plasticity contribute to the symptomatology of parkinsonism are warranted.
机译:纹状体多巴胺(DA)失神经导致帕金森氏病中棘突投射神经元上的树突棘大量丢失。在1-甲基-4-苯基-1,2,3,6-四氢吡啶处理的帕金森氏猴中,与皮层或丘脑谷氨酸能末端接触的棘突在直接和间接纹状体真菌神经元上均受到严重影响。在啮齿动物中,至少在急性多巴胺去神经支配的早期阶段,间接途径神经元似乎更敏感。其余皮质上皮和丘脑上突触轴突突经历复杂的超微结构重塑,这与DA去神经的灵长类纹状体中突触活性的增加相一致,这可能解释了帕金森氏症各种动物模型中所报道的皮质上皮系统的病理生理过度活跃。钙介导的转录因子肌细胞增强因子2的调节被认为是纹状体脊柱可塑性的一种可能的潜在机制。有必要进行进一步的研究来确定纹状体可塑性的变化如何有助于帕金森氏症的症状。

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