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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Cholinergic modulation of intrinsic fibre-evoked excitatory transmission contains a nicotinic component in immature but not adult rat piriform cortex, in vitro.
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Cholinergic modulation of intrinsic fibre-evoked excitatory transmission contains a nicotinic component in immature but not adult rat piriform cortex, in vitro.

机译:内在的纤维诱发的兴奋性传递的胆碱能调节在体外含有未成熟但不含有成年大鼠梨状皮层的烟碱成分。

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摘要

The piriform cortex (PC) is highly prone to epileptogenesis, particularly in immature animals, where decreased muscarinic modulation of PC intrinsic fibre excitatory neurotransmission is implicated as a likely cause. However, whether higher levels of acetylcholine (ACh) release occur in immature vs. adult PC remains unclear. We investigated this using in vitro extracellular electrophysiological recording techniques. Intrinsic fibre-evoked extracellular field potentials (EFPs) were recorded from layers II to III in PC brain slices prepared from immature (P14-18) and adult (P>40) rats. Adult and immature PC EFPs were suppressed by eserine (1muM) or neostigmine (1muM) application, with a greater suppression in immature ( approximately 40%) than adult ( approximately 30%) slices. Subsequent application of atropine (1muM) reversed EFP suppression, producing supranormal ( approximately 12%) recovery in adult slices, suggesting that suppression was solely muscarinic ACh receptor-mediated and that some 'basal'cholinergic 'tone' was present. Conversely, atropine only partially reversed anticholinesterase effects in immature slices, suggesting the presence of additional non-muscarinic modulation. Accordingly, nicotine (50muM) caused immature field suppression ( approximately 30%) that was further enhanced by neostigmine, whereas it had no effect on adult EFPs. Unlike atropine, nicotinic antagonists, mecamylamine and methyllycaconitine, induced immature supranormal field recovery ( approximately 20%) following anticholinesterase-induced suppression (with no effect on adult slices), confirming that basal cholinergic 'tone' was also present. We suggest that nicotinic inhibitory cholinergic modulation occurs in the immature rat PC intrinsic excitatory fibre system, possibly to complement the existing, weak muscarinic modulation, and could be another important developmentally regulated system governing immature PC susceptibility towards epileptogenesis.
机译:梨状皮质(PC)高度容易发生癫痫发生,特别是在未成熟的动物中,这可能是造成PC固有纤维兴奋性神经传递的毒蕈碱调节降低的原因。但是,尚不清楚在未成年与成年PC中是否发生更高水平的乙酰胆碱(ACh)释放。我们使用体外细胞外电生理记录技术对此进行了调查。在未成熟(P14-18)和成年(P> 40)大鼠制备的PC脑片中,从第II层到第III层记录了内在的纤维诱发的细胞外场电势(EFP)。成年和未成熟的PC EFPs通过使用红景天(1μM)或新斯的明(1μM)抑制,未成熟(约40%)的抑制作用要比成年(约30%)的切片更大。随后应用阿托品(1μM)可以逆转EFP抑制作用,使成年切片恢复正常(约12%)恢复正常,这表明抑制作用完全是由毒蕈碱ACh受体介导的,并且存在一些“基础”胆碱能“调”。相反,阿托品在未成熟切片中仅部分逆转了抗胆碱酯酶的作用,表明存在其他非毒蕈碱调节作用。因此,尼古丁(50μM)引起未成熟的磁场抑制(约30%),新斯的明进一步增强了该抑制作用,而对成年EFP没有影响。与阿托品不同的是,烟碱类拮抗剂,美卡明胺和甲基甘可卡因在抗胆碱酯酶诱导的抑制作用下诱导未成熟的超正常视野恢复(约20%)(对成人切片无影响),从而证实了基础胆碱能的“音调”也存在。我们建议烟碱抑制胆碱能调节发生在未成熟的大鼠PC内在兴奋性纤维系统中,可能是对现有的弱毒蕈碱调节的补充,并且可能是控制未成熟PC对癫痫发生敏感性的另一个重要的发育调控系统。

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