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大鼠初级感觉神经元P2X3受体的表达及其与SP的关系
引用本文:赵士洁,殷光甫,谷远征,李之望,胡道松,林传友,戴甲培.大鼠初级感觉神经元P2X3受体的表达及其与SP的关系[J].中国组织化学与细胞化学杂志,2006,15(1):91-94.
作者姓名:赵士洁  殷光甫  谷远征  李之望  胡道松  林传友  戴甲培
作者单位:华中科技大学同济医学院神经生物学系,武汉,430030
摘    要:目的研究在大鼠初级感觉神经元细胞上P2X3受体的表达情况及其与P物质的关系。方法取SD大鼠背根神经节(DRG)和三叉神经节(TG)固定后切片;用抗P2X3受体抗体和抗SP抗体进行免疫组织化学反应,并通过两种不同的显色方法同时进行P2X3受体和SP的双标。结果P2X3免疫反应阳性细胞主要集中在小细胞和中等细胞(其中在TG,P2X3-ir阳性神经元约占整个细胞的24.8%;在DRG约31.7%的神经元是P2X3-ir阳性),并且在DRG和TG细胞上均存在有P2X3受体和SP共存(TG上的双标细胞占P2X3-ir阳性细胞总数的36.26%,DRG上占46.81%)。结论由于ATP门控阳离子通道受体P2X3本身就与伤害性感受的初级传入有关,而它与SP的共存可提示当组织中的ATP释放时可以通过P2X3受体作用于含SP的伤害性感觉神经末梢上,促使SP释放引起痛觉过敏。

关 键 词:P2X3受体  P物质  背根神经节  三叉神经节
收稿时间:03 21 2005 12:00AM
修稿时间:06 28 2005 12:00AM

EXPRESSION OF ADENOSINE TRIPHOSPHATE P2X3 RECEPTOR AND ITS RELATION WITH SUBSTANCE P IN RAT PRIMARY SENSORY NEURONS
Zhao Shijie,Yin Guangfu,Gu Yuanzheng,Li Zhiwang,Hu Daosong,Lin Chuanyou,Dai Jiapei.EXPRESSION OF ADENOSINE TRIPHOSPHATE P2X3 RECEPTOR AND ITS RELATION WITH SUBSTANCE P IN RAT PRIMARY SENSORY NEURONS[J].Chinese Journal of Histochemistry and Cytochemistry,2006,15(1):91-94.
Authors:Zhao Shijie  Yin Guangfu  Gu Yuanzheng  Li Zhiwang  Hu Daosong  Lin Chuanyou  Dai Jiapei
Institution:Department of Neurobiology , Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China
Abstract:Objective To investigate the expression of P2X3 receptor subunits in rat sensory neurons and its relation to substance P(SP).Methods SD-rat trigeminal ganglion(TG) and dorsal root ganglion (DRG) were fixed and sectioned.Anti-P2X3 and anti-SP antibodies were used to label P2X3 and SP;then two different stains were used to achieve double immunostaining.Results P2X3-ir positive neurons were localized in small and medium cells(In TG the percentagesof small,medium and large cells were 93.5%,6.5% and 0;in DRG these three percentages were 96.9%,3.1% and 0 respectively.Colocalization of P2X3 and SP was found in TG and DRG(TG: 36.26%,DRG: 46.81%).Conclusion The P2X3 receptor is an ATP-gated cation channel that is related to primary nociceptive sensory transimission.Its colocalization with SP suggests that ATP in tissues may act on nociceptive sensory nerve fibers containing SP by acting on P2X3 receptors located in the periphery,which can enhance SP release and induce hyperalgesia.
Keywords:P2X3 receptor  Substance P  Dorsal root ganglion  Trigeminal ganglion
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