Farré Ricard, Aulí Mariona, Lecea Begoña, Martínez Emma, Clavé Pere
Fundació de Gastroenterologia Dr. Francisco Vilardell, Barcelona, Spain.
J Pharmacol Exp Ther. 2006 Mar;316(3):1238-48. doi: 10.1124/jpet.105.094482. Epub 2005 Nov 22.
The neurotransmitters mediating relaxation of lower esophageal sphincter (LES) were studied using circular LES strips from adult pigs in organ baths. LES relaxation by sodium nitroprusside (1 nM-3 microM), vasoactive intestinal peptide (VIP) and pituitary adenylate cyclase-activating peptide (PACAP; 1 nM-1 microM), ATP (10 microM-30 mM), and tricarbonyldichlororuthenum dimer (1 microM-1 mM) was unaffected by tetrodotoxin (1 microM) or l-N(G)-nitroarginine methyl ester (l-NAME; 100 microM). Calcitonin gene-related peptide (CGRP; 1 nM-1 microM) did not affect LES tone. ATP relaxation was blocked by 1 microM apamin and the P2Y(1) antagonist MRS 2179 (N6-methyl 2'-deoxyadenosine 3',5'-bisphosphate; 10 microM). Apamin inhibited PACAP relaxation. VIP and PACAP relaxation was blocked by 10 U/ml alpha-chymotrypsin. L-NAME (-62.52 +/- 13.13%) and 1H-[1,2,4]oxadiazole-[4,3-alpha]quinoxalin-1-one (ODQ; 10 microM, -67.67 +/- 6.80%) similarly inhibited electrical LES relaxation, and apamin blocked non-nitrergic relaxation. Nicotine relaxation (100 microM) was inhibited by L-NAME (-60.37 +/- 10.8%) and ODQ (-41.90 +/- 7.89%), and apamin also blocked non-nitrergic relaxation. Non-nitrergic and apamin-sensitive LES relaxation by electrical stimulation or nicotine was strongly inhibited by MRS 2179, slightly inhibited by alpha-chymotrypsin and the P2X(1,2,3) receptor antagonist NF 279 (8,8 cent-[carbonylbis(imino-4,1-phenylenecarbonylimino-4,1-phenylenecarbonylimino)]bis-1,3,5-naphthalenetrisulfonic acid hexasodium salt; 10 microM), and unaffected by tin protoporphyrin IX (100 microM). Porcine LES relaxation after stimulation of intrinsic inhibitory motor neurons is mediated by two main neuromuscular pathways: nitric oxide through guanylate cyclase signaling and apamin-insensitive mechanisms and by non-nitrergic apamin-sensitive neurotransmission mainly mediated by ATP, ADP, or a related purine acting on P2Y1 receptors and a minor contribution of purinergic P2X1,2,3 receptors and PACAP. Nitrergic and purinergic co-transmitters show parallel effects of similar magnitude without major interplay. Our study shows no role for CGRP and only a minor one for VIP and carbon monoxide in porcine LES relaxation.
利用成年猪的食管下括约肌(LES)环形肌条,在器官浴槽中研究了介导LES舒张的神经递质。硝普钠(1 nM - 3 μM)、血管活性肠肽(VIP)、垂体腺苷酸环化酶激活肽(PACAP;1 nM - 1 μM)、ATP(10 μM - 30 mM)和二氯二羰基钌二聚体(1 μM - 1 mM)引起的LES舒张不受河豚毒素(1 μM)或L - N(G)-硝基精氨酸甲酯(L - NAME;100 μM)的影响。降钙素基因相关肽(CGRP;1 nM - 1 μM)不影响LES张力。1 μM蜂毒明肽和P2Y(1)拮抗剂MRS 2179(N6 - 甲基2'-脱氧腺苷3',5'-双磷酸;10 μM)可阻断ATP引起的舒张。蜂毒明肽抑制PACAP引起的舒张。10 U/ml的α - 糜蛋白酶可阻断VIP和PACAP引起的舒张。L - NAME(-62.52 ± 13.13%)和1H - [1,2,4]恶二唑并[4,3 - α]喹喔啉 - 1 - 酮(ODQ;10 μM,-67.67 ± 6.80%)同样抑制电刺激引起的LES舒张,且蜂毒明肽可阻断非一氧化氮能性舒张。尼古丁(100 μM)引起的舒张被L - NAME(-60.37 ± 10.8%)和ODQ(-41.90 ± 7.89%)抑制,蜂毒明肽也可阻断非一氧化氮能性舒张。电刺激或尼古丁引起的非一氧化氮能性和对蜂毒明肽敏感的LES舒张被MRS 2179强烈抑制,被α - 糜蛋白酶和P2X(1,2,3)受体拮抗剂NF 279(8,8 - 亚甲基双[羰基双(亚氨基 - 4,1 - 亚苯基羰基亚氨基 - 4,1 - 亚苯基羰基亚氨基)]双 - 1,3,5 - 萘三磺酸六钠盐;10 μM)轻度抑制,且不受原卟啉锡IX(100 μM)影响。刺激内在抑制性运动神经元后猪LES的舒张由两条主要的神经肌肉途径介导:通过鸟苷酸环化酶信号传导的一氧化氮和对蜂毒明肽不敏感的机制,以及主要由ATP、ADP或相关嘌呤作用于P2Y1受体介导的非一氧化氮能性、对蜂毒明肽敏感的神经传递,还有嘌呤能P2X1,2,3受体和PACAP的较小贡献。一氧化氮能性和嘌呤能共递质显示出相似程度的平行效应,没有主要的相互作用。我们的研究表明,CGRP在猪LES舒张中不起作用,VIP和一氧化碳仅起较小作用。