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神经节内板状末梢是豚鼠食道迷走传入神经末梢的机械敏感性受体
作者姓名:Yang X  Liu R  Brookes SJ
作者单位:山东大学齐鲁医院,济南,250012
摘    要:电生理学研究发现迷走传入神经在胃肠道的特有结构——神经节内板状末梢(intraganglionic laminar endings,IGLEs)具有感受机械刺激的功能,推断其为迷走神经机械敏感性受体。但是电生理学方法不能将IGLEs的特异结构与其感受机械刺激的功能同时显示出来,而且IGLEs作为机械敏感性受体,其传导机械刺激的机制尚不清楚。本研究应用活性依赖性荧光染料 FM1-43结合牵拉刺激豚鼠食道显示激活的IGLEs结构,以期观察IGLEs是否对机械刺激敏感。同时用多种药物阻断或促进豚鼠食道IGLEs的激活以探讨IGLEs传导机械刺激的机制。应用神经顺行标记技术以验证FM1-43显示的特异结构是否为IGLEs。结果表明,牵拉刺激结合FM1-43染色显示的结构与神经顺行标记法一致,牵拉刺激组激活的IGLEs数目明显多于未牵拉组 (90.4±9.5)%vs(10.7±2.1)%,P<0.05]。IGLEs对牵拉刺激的敏感性,表明IGLEs是迷走传入神经在胃肠道内感受机械刺激的受体。TTX,阿托品和钙离子对牵拉刺激激活IGLEs无明显影响,表明IGLEs对机械刺激的传导不需要神经递质以及动作电位的传导,而是直接通过机械门控离子通道实现的。多种TRP通道阻断剂包括SKF,gadolinium对IGLEs的激活无影响,而上皮钠离子通道阻断剂benzamil可以明显阻断IGLEs的激活,因此推断,IGLEs结构中传导机械刺激的离子通道可能属于上皮钠离子通道家族而非电压门控钠离子通道或TRP通道。

关 键 词:神经节内板状末梢  机械传导  机械受体  受体  顺行  标记
收稿时间:2005-12-09
修稿时间:2006-01-11

Intraganglionic laminar endings act as mechanoreceptors of vagal afferent nerve in guinea pig esophagus
Yang X,Liu R,Brookes SJ.Intraganglionic laminar endings act as mechanoreceptors of vagal afferent nerve in guinea pig esophagus[J].Acta Physiologica Sinica,2006,58(2):171-176.
Authors:Yang Xia  Liu Ran  Brookes Simon J H
Institution:Qilu Hospital, Shandong University, Jinan 250012, China. Email: freetree1126@yahoo.com.cn.
Abstract:Intraganglionic laminar endings (IGLEs) have been supposed to be the mechanoreceptors in the gut by electrophysiological recording techniques. But the specialized morphology of IGLEs could not be displayed closely associated with this function and the mechanism that IGLEs act as the mechanotransduction sites in the gut is not yet well understood. In the present study, we used styryl dye FM1-43 combined with stretch stimulation in the guinea pig esophagus to test whether IGLEs acted as the mechano-sensitive receptors of the vagal afferent nerves. At the same time, the special structure of IGLEs displayed by FM1-43 was further confirmed by neurobiotin anterograde labeling technique. To further investigate the characteristics of IGLEs as mechanosensitive receptors, different drugs were used to block or stimulate IGLEs activation. Our results indicated that only in the stretched preparation could FM1-43 enter the IGLEs and completely display their specialized structure, which was consistent with that shown by neurobiotin. The amount of IGLEs shown by stretch-evoked FM1-43 staining was much more than that shown without stretch stimulation (90.4 +/- 9.5) % vs (10.7 +/- 2.1) %, P<0.05]. Ca(2+), TTX (0.6 mumol/L), atropine (0.6 mumol/L), SKF (50 mumol/L), and gadolium (100 mumol/L) had no effect on the IGLEs activation. But for benzamil (100 mumol/L), an epithelial sodium channel blocker, activation of IGLEs by stretch stimulation was significantly blocked. The potent ATP analogue, alpha,beta-methylene ATP (100 mumol/L) could not activate FM1-43 staining without stretch. These results indicate that IGLEs are sensitive to mechanical stimulation. This could lead to the deduction that IGLEs act as the mechanoreceptors of vagal afferent nerve. IGLEs could transmit mechanical stimuli directly through ion channels, independent of neurotransmitter release and action potential propagation. The stretch-sensitive channels on IGLEs probably belong to the epithelial sodium channel family rather than voltage-gated sodium ion channels. Furthermore, styryl dye FM1-43 is a useful activity-dependent marker to demonstrate the structure and function of IGLEs in guinea pig esophagus.
Keywords:FM1-43  intraganglionic laminar endings  mechanotransduction  mechanoreceptors  receptor  FM 1-43  anterograde  labeling
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