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一种由精氨酸衍生的介质介导食管下括约肌的抑制性连接电位和舒张:血管活性肠肽的独立作用。

A mediator derived from arginine mediates inhibitory junction potentials and relaxations in lower esophageal sphincter: an independent role for vasoactive intestinal peptide.

作者信息

Jury J, Ahmedzadeh N, Daniel E E

机构信息

Division of Physiology and Pharmacology, McMaster University, Hamilton, Ont., Canada.

出版信息

Can J Physiol Pharmacol. 1992 Aug;70(8):1182-9. doi: 10.1139/y92-164.

Abstract

This study provides mechanical and electrophysiological evidence to show that a metabolite of arginine, not vasoactive intestinal peptide (VIP), is the putative nonadrenergic noncholinergic (NANC) inhibitory mediator in canine and opossum lower esophageal sphincters (LES). Relaxations of spontaneous active tension by electrical field stimulation (FS) at parameters that induced tetrodotoxin (TTX)-sensitive responses were abolished by L-N omega-arginine methyl ester (L-NAME) at 10(-4) M and restored by L-arginine (10(-3) M) but not D-arginine (10(-3) M). TTX-insensitive relaxations to 5-ms pulses were unaffected by L-NAME, L- or D-arginine. VIP (10(-6) M) caused maximum relaxations of basal tension in both the opossum and canine LES. However these relaxations, unlike those from FS were unaffected by L-NAME. Methylene blue (5 x 10(-5)M) increased basal tension of the LES in each species, and did not inhibit the relaxation to FS or VIP, but often increased the amplitudes of these responses due to the increase in basal tension. In parallel experiments NANC inhibition of body circular muscle from opossum esophagus was abolished by methylene blue. Electrophysiological studies using micro-electrodes revealed that NANC inhibition was associated with inhibitory junction potentials in the canine LES. These were inhibited by L-NAME and restored by L-arginine but not D-arginine. In contrast, 10(-6) M VIP in canine LES did not induce any change in membrane potential during a 20-min superfusion. Sodium nitroprusside also hyperpolarized sphincteric muscle and its effects were not affected by L-NAME.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究提供了机械和电生理证据,表明精氨酸的一种代谢产物而非血管活性肠肽(VIP)是犬和负鼠下食管括约肌(LES)中假定的非肾上腺素能非胆碱能(NANC)抑制性介质。在诱导河豚毒素(TTX)敏感反应的参数下,电场刺激(FS)引起的自发活动张力松弛被10⁻⁴M的L-Nω-精氨酸甲酯(L-NAME)消除,并被L-精氨酸(10⁻³M)恢复,但D-精氨酸(10⁻³M)不能恢复。对5毫秒脉冲的TTX不敏感松弛不受L-NAME、L-或D-精氨酸影响。VIP(10⁻⁶M)使负鼠和犬LES的基础张力最大程度松弛。然而,与FS引起的松弛不同,这些松弛不受L-NAME影响。亚甲蓝(5×10⁻⁵M)增加了每个物种LES的基础张力,且不抑制对FS或VIP的松弛,但由于基础张力增加,常增加这些反应的幅度。在平行实验中,亚甲蓝消除了负鼠食管体环行肌的NANC抑制。使用微电极的电生理研究表明,NANC抑制与犬LES中的抑制性接头电位有关。这些电位被L-NAME抑制,并被L-精氨酸恢复,但D-精氨酸不能恢复。相比之下,在20分钟的灌注期间,犬LES中10⁻⁶M的VIP未引起膜电位的任何变化。硝普钠也使括约肌肌超极化,其作用不受L-NAME影响。(摘要截短于250字)

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