Lee Kyu Pil, Nakamura Eri, So Insuk, Kim Ki Whan, Suzuki Hikaru
Department of Physiology, Nagoya City University Medical School, Mizuho-ku, 467-8601 Nagoya, Japan.
Pflugers Arch. 2004 Sep;448(6):629-37. doi: 10.1007/s00424-004-1300-7. Epub 2004 Jun 26.
Following inhibition of NO production with nitroarginine, circular muscle isolated from the guinea-pig gastric antrum generated periodic slow potentials and unitary potentials. Transmural nerve stimulation (TNS) during the interval between slow potentials evoked an apamin-sensitive inhibitory junction potential (IJP) followed by an atropine-sensitive depolarization; the latter was either a transient depolarization with enhanced generation of unitary potentials or a slow potential. After inhibition of unitary potentials and slow potentials with 1 mM caffeine, TNS evoked an IJP and subsequent cholinergic depolarization, the latter developing slowly and lasting for about 10 s. TNS was unable to elicit a slow potential until a certain period of time had elapsed following the cessation of a slow potential. The period during which TNS could not evoke slow potentials (termed the high-threshold period) was about 10 s, and this period was increased by chelerythrine and decreased by phorbol esters. It is concluded that cholinergic nerve-mediated excitation of gastric muscle involves the activation of protein kinase C (PKC), and that the high-threshold period, during which the generation of slow potentials by TNS is inhibited, may be a consequence of reduced activity of PKC.
用硝基精氨酸抑制一氧化氮产生后,从豚鼠胃窦分离的环形肌产生周期性慢电位和单位电位。在慢电位的间隔期间进行跨膜神经刺激(TNS),诱发了一种蜂毒明肽敏感的抑制性接头电位(IJP),随后是阿托品敏感的去极化;后者要么是伴有单位电位产生增加的短暂去极化,要么是慢电位。用1 mM咖啡因抑制单位电位和慢电位后,TNS诱发IJP和随后的胆碱能去极化,后者发展缓慢,持续约10秒。在慢电位停止后的一段时间内,TNS无法诱发慢电位。TNS不能诱发慢电位的时期(称为高阈值期)约为10秒,该时期被白屈菜红碱延长,被佛波酯缩短。结论是胆碱能神经介导的胃肌兴奋涉及蛋白激酶C(PKC)的激活,并且TNS诱发慢电位受到抑制的高阈值期可能是PKC活性降低的结果。