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W/Wv突变小鼠回肠和空肠中一氧化氮能抑制性神经对自发活动的不同调节作用。

Different modulation of spontaneous activities by nitrergic inhibitory nerves between ileum and jejunum in W/Wv mutant mice.

作者信息

Nakagawa Tadashi, Ueshima Shigeyuki, Fujii Hisao, Nakajima Yoshiyuki, Takaki Miyako

机构信息

Department of Physiology II, Nara Medical University School of Medicine, 840 Shijo-cho, Kashihara, Nara 634-8521, Japan.

出版信息

Auton Neurosci. 2005 Apr 29;119(1):25-35. doi: 10.1016/j.autneu.2005.02.006. Epub 2005 Mar 23.

Abstract

We compared the spontaneous electrical and mechanical activities between the jejunum and ileum in the W/Wv mutant mouse, where ICC in the myenteric region (ICC-MY) are deficient. Electrical slow waves (SWs) superimposed with spike potentials, and synchronous circular and longitudinal muscle mechanical activities at a regular rhythm under approximately 1 cm H2O were recorded in the jejunum and ileum of wild-type mice. However, in the jejunum and ileum of W/Wv mice, irregular electrical and mechanical activities without discernable SWs were recorded. N-nitro-L-arginine methyl ester (L-NAME) significantly decreased the mean interval of longitudinal muscle contractions from 4.43+/-3.39 to 2.50+/-1.23 s in the ileum of W/W(V) mice. L-NAME also significantly decreased mean coefficient of variance (decreased irregularity) in the intervals from 2.59+/-0.84 to 0.48+/-0.46 in the ileum. Tetrodotoxin also significantly decreased mean interval and coefficient of variance in the ileum. Neither L-NAME nor tetrodotoxin affected contractile activity in the jejunum. These results suggest that enteric nitrergic nerves in the ileum, but not the jejunum, mediate a steady-state inhibition of myogenic activity in W/Wv mice.

摘要

我们比较了W/Wv突变小鼠空肠和回肠之间的自发电活动和机械活动,该小鼠的肌间区域ICC(ICC-MY)存在缺陷。在野生型小鼠的空肠和回肠中记录到叠加有锋电位的电慢波(SWs),以及在约1 cm H2O压力下以规则节律出现的同步环形和纵行肌机械活动。然而,在W/Wv小鼠的空肠和回肠中,记录到无明显SWs的不规则电活动和机械活动。N-硝基-L-精氨酸甲酯(L-NAME)显著降低了W/W(V)小鼠回肠中纵行肌收缩的平均间隔,从4.43±3.39秒降至2.50±1.23秒。L-NAME还显著降低了回肠中间隔的平均变异系数(降低了不规则性),从2.59±0.84降至0.48±0.46。河豚毒素也显著降低了回肠中的平均间隔和变异系数。L-NAME和河豚毒素均未影响空肠的收缩活动。这些结果表明,回肠而非空肠中的肠氮能神经介导了W/Wv小鼠肌源性活动的稳态抑制。

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