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尼古丁通过非α7 型烟碱型乙酰胆碱受体进入细胞的钙离子促进内嗅区分子细胞长时程增强的诱导。

Nicotine facilitates long-term potentiation induction in oriens-lacunosum moleculare cells via Ca2+ entry through non-alpha7 nicotinic acetylcholine receptors.

机构信息

Department of Neurobiology and Behavior, University of California, Irvine, CA 92697-4550, USA.

出版信息

Eur J Neurosci. 2010 Feb;31(3):463-76. doi: 10.1111/j.1460-9568.2009.07058.x. Epub 2010 Jan 26.

Abstract

Hippocampal inhibitory interneurons have a central role in the control of network activity, and excitatory synapses that they receive express Hebbian and anti-Hebbian long-term potentiation (LTP). Because many interneurons in the hippocampus express nicotinic acetylcholine receptors (nAChRs), we explored whether exposure to nicotine promotes LTP induction in these interneurons. We focussed on a subset of interneurons in the stratum oriens/alveus that were continuously activated in the presence of nicotine due to the expression of non-desensitizing non-alpha7 nAChRs. We found that, in addition to alpha2 subunit mRNAs, these interneurons were consistently positive for somatostatin and neuropeptide Y mRNAs, and showed morphological characteristics of oriens-lacunosum moleculare cells. Activation of non-alpha7 nAChRs increased intracellular Ca(2+) levels at least in part via Ca(2+) entry through their channels. Presynaptic tetanic stimulation induced N-methyl-D-aspartate receptor-independent LTP in voltage-clamped interneurons at -70 mV when in the presence, but not absence, of nicotine. Intracellular application of a Ca(2+) chelator blocked LTP induction, suggesting the requirement of Ca(2+) signal for LTP induction. The induction of LTP was still observed in the presence of ryanodine, which inhibits Ca(2+) -induced Ca(2+) release from ryanodine-sensitive intracellular stores, and the L-type Ca(2+) channel blocker nifedipine. These results suggest that Ca(2+) entry through non-alpha7 nAChR channels is critical for LTP induction. Thus, nicotine affects hippocampal network activity by promoting LTP induction in oriens-lacunosum moleculare cells via continuous activation of non-alpha7 nAChRs.

摘要

海马抑制性中间神经元在控制网络活动方面起着核心作用,它们所接收的兴奋性突触表达赫布和抗赫布长时程增强(LTP)。由于海马中的许多中间神经元表达烟碱型乙酰胆碱受体(nAChRs),我们探讨了暴露于尼古丁是否会促进这些中间神经元中的 LTP 诱导。我们专注于在存在尼古丁的情况下由于非脱敏非-α7 nAChRs 的表达而持续激活的齿状回-门区中的中间神经元亚群。我们发现,除了 α2 亚基 mRNA 外,这些中间神经元还一致为生长抑素和神经肽 Y mRNA 阳性,并表现出齿状回-门区分子细胞的形态特征。非-α7 nAChRs 的激活至少部分通过其通道的 Ca2+ 内流增加细胞内 Ca2+ 水平。在存在尼古丁但不存在尼古丁的情况下,强直刺激诱导电压钳制中间神经元在-70 mV 时诱导 N-甲基-D-天冬氨酸受体非依赖性 LTP。细胞内应用 Ca2+ 螯合剂阻断 LTP 诱导,表明 Ca2+ 信号对 LTP 诱导的要求。在抑制 Ca2+ 诱导的 Ryanodine 敏感细胞内储存的 Ca2+ 释放的 Ryanodine 存在下仍观察到 LTP 的诱导,以及 L 型 Ca2+ 通道阻滞剂硝苯地平。这些结果表明,非-α7 nAChR 通道的 Ca2+ 内流对于 LTP 诱导至关重要。因此,尼古丁通过持续激活非-α7 nAChRs 促进齿状回-门区分子细胞中的 LTP 诱导来影响海马网络活动。

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