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首页> 外文期刊>The Journal of Experimental Biology >Optical studies of nicotinic acetylcholine receptor subtypes in the guinea-pig enteric nervous system
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Optical studies of nicotinic acetylcholine receptor subtypes in the guinea-pig enteric nervous system

机译:豚鼠肠道神经系统中烟碱型乙酰胆碱受体亚型的光学研究

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摘要

Nicotinic transmission in the enteric nervous system (ENS) is extensive, but the role of individual nicotinic acetylcholine receptor (nAChR) subtypes in the functional connectivity of its plexuses has been elusive. Using monoclonal antibodies (mAbs) against neuronal alpha 3-, alpha 4-, alpha 3/alpha 5-, beta 2-, beta 4- and alpha 7-subunits, combined with radioimmunoassays and immunocytochemistry, we demonstrate that guinea-pig enteric ganglia contain all of these nAChR-subunits with the exception of alpha 4, and so, differ from mammalian brain. This information alone, however, is insufficient to establish the functional role of the identified nAChR-subtypes within the enteric networks and, ultimately, their specific contributions to gastrointestinal physiology. We have used voltage-sensitive dyes and a high-speed CCD camera, in conjunction with specific antagonists to various nAChRs, to elucidate some of the distinct contributions of the individual subtypes to the behaviour of enteric networks. In the guinea-pig, the submucous plexus has the extraordinary advantage that it is virtually two-dimensional, permitting optical recording, with single cell resolution, of the electrical activity of all of its neurones. In this plexus, the block of alpha 3 beta 2-, alpha 3 beta 4- and/or alpha 7-nAChRs always results in a decrease in the magnitude of the synaptic response. However, the magnitude of the fast excitatory post-synaptic potentials (epsps) evoked by electrical stimulation of a neighbouring ganglion varies from cell to cell, reflecting the differential expression of subunits already observed using mAbs, as well as the strengths of the activated synaptic inputs. At the same time, we observe that submucous neurones have a substantial mecamylamine (Mee)-insensitive (nonnicotinic) component to their fast epsps, which may point to the presence of purinergic or serotonergic fast epsps in this system. In the myenteric plexus, on the other hand, the antagonist-induced changes in the evoked synaptic response vary depending upon the location of the stimulating electrode with respect to the ganglion under study. The range of activity patterns that follows sequential pharmacological elimination of individual subtypes suggests that nAChRs may be capable of regulating the activity of both excitatory and inhibitory pathways, in a manner similar to that described in the central nervous system.
机译:肠道神经系统(ENS)的烟碱传播广泛,但单个烟碱乙酰胆碱受体(nAChR)亚型在其丛的功能连接中的作用却难以捉摸。使用针对神经元alpha 3-,alpha 4-,alpha 3 / alpha 5-,beta 2-,beta 4-和alpha 7亚基的单克隆抗体(mAb),结合放射免疫测定和免疫细胞化学,我们证明了豚鼠肠神经节包含所有这些nAChR亚基,但alpha 4除外,因此与哺乳动物的大脑不同。然而,仅此信息不足以建立所鉴定的nAChR亚型在肠内网络中的功能作用,并最终确定其对胃肠生理的特定作用。我们已经使用了压敏染料和高速CCD相机,以及对各种nAChRs的特异性拮抗剂,来阐明各个亚型对肠道网络行为的独特贡献。在豚鼠中,粘膜下丛具有非凡的优势,它实际上是二维的,允许以单细胞分辨率光学记录其所有神经元的电活动。在这个神经丛中,α3beta2-,α3beta4-和/或α7-nAChRs的阻滞总是导致突触反应幅度的降低。但是,相邻神经节的电刺激引起的快速兴奋性突触后电位(epsps)的大小在细胞之间有所不同,反映了已经使用mAb观察到的亚基的差异表达以及激活的突触输入的强度。 。同时,我们观察到粘膜下神经元对它们的快速epsps具有实质的美卡敏胺(Mee)不敏感(nonnicotinicnic)成分,这可能表明该系统中存在嘌呤能或血清素能快速epsps。另一方面,在肌间神经丛中,由拮抗剂诱导的诱发的突触反应的变化根据所研究的神经节相对于刺激电极的位置而变化。个别亚型的顺序药理消除后的活性模式范围表明,nAChRs可能能够以类似于中枢神经系统中所述的方式调节兴奋性途径和抑制性途径的活性。

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