钙通道阻断可减弱由内嗅淀粉样变性引起的齿状回异常突触传递。

Synapse (New York, N.y.) Pub Date : 2016-10-01 Epub Date: 2016-07-07 DOI:10.1002/syn.21915
Hamid Gholami Pourbadie, Nima Naderi, Mahyar Janahmadi, Nasrin Mehranfard, Fereshteh Motamedi
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引用次数: 15

摘要

内嗅-海马网络是最早受到阿尔茨海默病(AD)影响的神经回路之一。大量数据提供了阿尔茨海默病动物模型齿状回突触缺陷的证据。然而,对于内嗅皮质(EC)淀粉样变性如何影响阿尔茨海默病早期的每种兴奋性和/或抑制性传递,我们知之甚少。另一方面,人们认为钙平衡失调在AD的病因学中起着关键作用。本研究考察了EC淀粉样蛋白发病机制对DG颗粒细胞兴奋性或抑制性突触后电流(EPSC和IPSC)的影响,以及l型钙通道阻滞剂尼莫地平和伊地平可能的神经保护作用。将淀粉样蛋白β (Aβ) 1-42注射到雄性大鼠的EC中,一周后用全细胞膜片钳法观察DG颗粒细胞的突触电流。通过刺激穿孔通路诱发EPSCs。电压钳记录显示,Aβ处理大鼠DG颗粒细胞诱发EPSC幅值和配对脉冲易化显著降低。此外,Aβ处理动物的AMPA/NMDA比值显著降低。另一方面,在这些动物的DG颗粒细胞中,IPSC电流的振幅显著增加。这些突触电流的改变可通过每日在脑室内给予伊拉西平或尼莫地平而部分逆转。综上所述,我们的研究结果表明,EC中的a β触发DG中的兴奋性传递减少,AMPA电流大幅减少,导致抑制回路的突出活性和颗粒细胞的抑制增加,这可能有助于AD相关神经功能障碍的发展,CCBs治疗可以保护正常的突触传递,以对抗a β毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calcium channel blockade attenuates abnormal synaptic transmission in the dentate gyrus elicited by entorhinal amyloidopathy.

Entorhinal-hippocampal network is one of the earliest circuits which is affected by Alzheimer's disease (AD). There are numerous data providing the evidence of synaptic deficit in the dentate gyrus (DG) of AD animal model. However, there is little known about how entorhinal cortex (EC) amyloidophaty affects each excitatory and/or inhibitory transmission in the early stage of AD. On the other hand, it is believed that calcium dyshomeostasis has a critical role in the etiology of AD. Here, the effect of the EC amyloid pathogenesis on excitatory or inhibitory post synaptic currents (EPSC and IPSC, respectively) in the DG granule cells and then the possible neuroprotective action of L-type calcium channel blockers (CCBs), nimodipine and isradipine, were examined. The amyloid beta (Aβ) 1-42 was injected bilaterally into the EC of male rats and one week later, synaptic currents in the DG granule cells were assessed by whole cell patch clamp. EPSCs were evoked by stimulating the perforant pathway. Voltage clamp recording showed profound decrease of evoked EPSC amplitude and paired pulse facilitation in the DG granule cells of Aβ treated rats. Furthermore, AMPA/NMDA ratio was significantly decreased in the Aβ treated animals. On the other hand, amplitude of IPSC currents was significantly increased in the DG granule cells of these animals. These modifications of synaptic currents were partially reversed by daily intracerebroventricular administration of isradipine or nimodipine. In conclusion, our results suggest that Aβ in the EC triggers decreased excitatory transmission in the DG with substantial decrement in AMPA currents, leading to a prominent activity of inhibitory circuits and increased inhibition of granule cells which may contribute to the development of AD-related neurological deficits in AD and treatment by CCBs could preserve normal synaptic transmission against Aβ toxicity.

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