Nishiyama Kazuhiro, Azuma Yasu-Taka, Shintaku Kazuma, Yoshida Natsuho, Nakajima Hidemitsu, Takeuchi Tadayoshi
Laboratory of Veterinary Pharmacology, Division of Veterinary Science, Osaka Prefecture University Graduate School of Life and Environmental Science, Izumisano, Japan.
Pharmacology. 2014;94(3-4):99-108. doi: 10.1159/000363191. Epub 2014 Sep 13.
The gastrointestinal tract is composed of outer longitudinal muscle layers and inner circular muscle layers. Nitric oxide (NO), carbon monoxide (CO), and ATP play major roles as non-adrenergic non-cholinergic (NANC) inhibitory neurotransmitters in the longitudinal muscle of the mouse distal colon, whereas it is unclear which NANC inhibitory neurotransmitters are in its circular muscle. We investigated the electric field stimulation (EFS)-induced relaxations in the circular smooth muscle of the distal colon under NANC conditions. In the experiments in which N(ω)-nitro-L-arginine, an inhibitor of NO synthase, was added, the EFS-induced relaxation decreased in a concentration-dependent manner and finally vanished. In contrast, CO, purinergic receptor ligands, and peptidergic substances do not play major roles as NANC neurotransmitters in the circular muscle of the mouse distal colon. ODQ, an inhibitor of soluble guanylate cyclase, strongly attenuated EFS-induced relaxation. Ryanodine, a Ca(2+) release modulator at the sarcoplasmic reticulum, strongly attenuated EFS-induced relaxation as well. Relaxation induced by NOR-1, which generates NO, was inhibited by ODQ and ryanodine. Next, we performed experiments that simultaneously measured tension and the cytoplasmic Ca(2+) concentration ([Ca(2+)]cyt). NOR-1 decreased the tension and [Ca(2+)]cyt levels in the circular muscle. ODQ and ryanodine strongly attenuated the NOR-1-induced change in both tension and [Ca(2+)]cyt levels. In this study, we demonstrate that NO functions as a NANC inhibitory neurotransmitter in the circular muscle obtained from the mouse distal colon.
胃肠道由外层纵行肌层和内层环行肌层组成。一氧化氮(NO)、一氧化碳(CO)和三磷酸腺苷(ATP)作为非肾上腺素能非胆碱能(NANC)抑制性神经递质在小鼠远端结肠的纵行肌中发挥主要作用,而其环行肌中的NANC抑制性神经递质尚不清楚。我们研究了在NANC条件下电场刺激(EFS)诱导的远端结肠环行平滑肌舒张情况。在添加NO合酶抑制剂N(ω)-硝基-L-精氨酸的实验中,EFS诱导的舒张呈浓度依赖性降低,最终消失。相比之下,CO、嘌呤能受体配体和肽能物质在小鼠远端结肠环行肌中并非主要的NANC神经递质。可溶性鸟苷酸环化酶抑制剂ODQ可强烈减弱EFS诱导的舒张。肌浆网Ca(2+)释放调节剂ryanodine也可强烈减弱EFS诱导的舒张。由产生NO的NOR-1诱导的舒张被ODQ和ryanodine抑制。接下来,我们进行了同时测量张力和细胞质Ca(2+)浓度([Ca(2+)]cyt)的实验。NOR-1降低了环行肌中的张力和[Ca(2+)]cyt水平。ODQ和ryanodine强烈减弱了NOR-1诱导的张力和[Ca(2+)]cyt水平的变化。在本研究中,我们证明NO在从小鼠远端结肠获取的环行肌中作为NANC抑制性神经递质发挥作用。