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内侧嗅皮层神经切断术诱导小鼠器官型脑片培养中海马齿状回颗粒细胞兴奋性突触后传递的自身平衡型突触可塑性变化。

Entorhinal denervation induces homeostatic synaptic scaling of excitatory postsynapses of dentate granule cells in mouse organotypic slice cultures.

机构信息

Institute of Clinical Neuroanatomy, Neuroscience Center, Goethe-University Frankfurt, Frankfurt, Germany.

出版信息

PLoS One. 2012;7(3):e32883. doi: 10.1371/journal.pone.0032883. Epub 2012 Mar 5.

Abstract

Denervation-induced changes in excitatory synaptic strength were studied following entorhinal deafferentation of hippocampal granule cells in mature (≥ 3 weeks old) mouse organotypic entorhino-hippocampal slice cultures. Whole-cell patch-clamp recordings revealed an increase in excitatory synaptic strength in response to denervation during the first week after denervation. By the end of the second week synaptic strength had returned to baseline. Because these adaptations occurred in response to the loss of excitatory afferents, they appeared to be in line with a homeostatic adjustment of excitatory synaptic strength. To test whether denervation-induced changes in synaptic strength exploit similar mechanisms as homeostatic synaptic scaling following pharmacological activity blockade, we treated denervated cultures at 2 days post lesion for 2 days with tetrodotoxin. In these cultures, the effects of denervation and activity blockade were not additive, suggesting that similar mechanisms are involved. Finally, we investigated whether entorhinal denervation, which removes afferents from the distal dendrites of granule cells while leaving the associational afferents to the proximal dendrites of granule cells intact, results in a global or a local up-scaling of granule cell synapses. By using computational modeling and local electrical stimulations in Strontium (Sr(2+))-containing bath solution, we found evidence for a lamina-specific increase in excitatory synaptic strength in the denervated outer molecular layer at 3-4 days post lesion. Taken together, our data show that entorhinal denervation results in homeostatic functional changes of excitatory postsynapses of denervated dentate granule cells in vitro.

摘要

去传入诱导的兴奋性突触强度变化研究了海马颗粒细胞在成熟(≥ 3 周龄)的鼠器官型内嗅-海马切片培养的传入去传入后。全细胞膜片钳记录显示在去传入后的第一周内,兴奋性突触强度的增加以响应去传入。到第二周结束时,突触强度已恢复到基线。因为这些适应发生在兴奋性传入的丧失,它们似乎与兴奋性突触强度的稳态调节一致。为了测试去传入诱导的突触强度变化是否利用与药物活性阻断后的稳态突触缩放相似的机制,我们在损伤后 2 天用河豚毒素处理去传入培养物 2 天。在这些培养物中,去传入和活性阻断的作用不是加性的,表明涉及类似的机制。最后,我们研究了内嗅去传入是否导致颗粒细胞树突的远端去传入,同时保留颗粒细胞近端树突的关联传入,从而导致颗粒细胞突触的整体或局部缩放。通过使用计算建模和在含锶(Sr(2+))的浴液中进行局部电刺激,我们发现证据表明在损伤后 3-4 天,去传入的外分子层中的兴奋性突触强度有分层特异性增加。总之,我们的数据表明,内嗅去传入导致体外去传入的齿状颗粒细胞的兴奋性突触的稳态功能变化。

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