Bian X, Bertrand P P, Bornstein J C
Department of Physiology, University of Melbourne, Parkville, Victoria 3010, Australia.
J Physiol. 2000 Nov 1;528(Pt 3):551-60. doi: 10.1111/j.1469-7793.2000.00551.x.
The role of P2X receptors in descending inhibitory reflexes evoked by distension or mucosal distortion in the guinea-pig ileum was studied using intracellular recording from the circular muscle in a two-chambered organ bath. This allowed separate superfusion of the sites of reflex stimulation and recording, thereby allowing drugs to be selectively applied to different parts of the reflex pathway. Inhibitory junction potentials (IJPs) evoked by electrical field stimulation (EFS) in the recording chamber were compared with those evoked during reflexes to control for effects of P2 receptor antagonists on neuromuscular transmission. The P2 receptor antagonists suramin (100 microM) and pyridoxal phosphate-6-azophenyl-2',4'-disulphonic acid (10 and 60 microM; PPADS), when added to the recording chamber, depressed reflexly evoked IJPs significantly more than those evoked by EFS. In particular, 10 microM PPADS depressed IJPs evoked by distension or mucosal distortion by about 50 %, but had little effect on IJPs evoked by EFS. Blockade of synaptic transmission in the stimulation chamber with a low Ca2+-high Mg2+ solution depressed, but did not abolish, IJPs evoked by distension. The residual reflex IJPs were unaffected by PPADS (10 microM), hyoscine (1 microM), hyoscine plus hexamethonium (200 microM), or hysocine plus hexamethonium plus PPADS in the recording chamber. We conclude that P2X receptors are important for synaptic transmission from descending interneurons to inhibitory motor neurons in descending inhibitory reflex pathways of guinea-pig ileum. Transmission from anally directed axons of distension-sensitive intrinsic sensory neurons to inhibitory motor neurons is unlikely to involve P2X, muscarinic or nicotinic receptors.
利用双室器官浴槽中环形肌的细胞内记录技术,研究了P2X受体在豚鼠回肠扩张或黏膜变形所诱发的下行抑制反射中的作用。这使得能够分别对反射刺激部位和记录部位进行灌流,从而可以将药物选择性地应用于反射通路的不同部位。将记录室中电场刺激(EFS)诱发的抑制性接头电位(IJPs)与反射过程中诱发的IJPs进行比较,以控制P2受体拮抗剂对神经肌肉传递的影响。当将P2受体拮抗剂苏拉明(100微摩尔)和磷酸吡哆醛-6-偶氮苯-2',4'-二磺酸(10和60微摩尔;PPADS)添加到记录室时,它们对反射诱发的IJPs的抑制作用明显大于对EFS诱发的IJPs的抑制作用。特别是,10微摩尔的PPADS可使扩张或黏膜变形诱发的IJPs降低约50%,但对EFS诱发的IJPs影响很小。用低钙高镁溶液阻断刺激室中的突触传递可降低但并未消除扩张诱发的IJPs。记录室中的PPADS(10微摩尔)、东莨菪碱(1微摩尔)、东莨菪碱加六甲铵(200微摩尔)或东莨菪碱加六甲铵加PPADS对残余的反射性IJPs没有影响。我们得出结论,在豚鼠回肠的下行抑制反射通路中,P2X受体对于从下行中间神经元到抑制性运动神经元的突触传递很重要。从对扩张敏感的内在感觉神经元的肛门方向轴突到抑制性运动神经元的传递不太可能涉及P2X、毒蕈碱或烟碱受体。