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一氧化氮参与大鼠回肠的肌肉舒张,但不参与短路电流的变化。

Nitric oxide is involved in muscle relaxation but not in changes in short-circuit current in rat ileum.

作者信息

Li Y F, Weisbrodt N W, Lodato R F, Moody F G

机构信息

Department of Surgery, University of Texas Medical School, Houston 77030.

出版信息

Am J Physiol. 1994 Apr;266(4 Pt 1):G554-9. doi: 10.1152/ajpgi.1994.266.4.G554.

Abstract

L-Arginine (L-Arg)-nitric oxide (NO) pathways in rat ileum were studied in an Ussing chamber modified so that a strain gauge transducer could be attached longitudinally on the serosal side of the intestine. Ileal segments from 22 rats were mounted as flat sheets and voltage clamped at zero transmural potential (PD). Changes in short-circuit current (delta ISC) in the absence of carbachol and longitudinal muscle relaxations in the presence of carbachol in response to transmural field stimulation (TMS; 5-s trains of impulses, 0.4-ms impulse duration, 1-10 Hz) were recorded during a control period, in the presence of N omega-nitro-L-arginine (L-NNA; 10(-4) M), and in the presence of L-Arg after treatment with L-NNA. In the control period, the delta ISC and muscle relaxation were frequency dependent with maximal responses generated at a frequency of 10 Hz. Tetrodotoxin (5 x 10(-6) M) blocked muscle relaxation and decreased delta ISC by 94% during TMS at 10 Hz. L-NNA blocked the muscle relaxation induced by TMS but failed to alter delta ISC. Muscle relaxation to TMS was restored dose dependently by L-Arg. In segments from another group of eight rats, saturated NO solutions relaxed the muscle but failed to change ISC either in the presence or absence of carbachol. These results support a role for NO as a neurotransmitter mediating relaxation of ileal smooth muscle but not mediating changes in epithelial ISC.

摘要

在改良的尤斯灌流小室中研究了大鼠回肠中L-精氨酸(L-Arg)-一氧化氮(NO)途径,该小室经过改装,以便应变片换能器能够纵向附着在肠的浆膜侧。将22只大鼠的回肠段制成扁平片,并在零跨膜电位(PD)下进行电压钳制。在对照期、存在Nω-硝基-L-精氨酸(L-NNA;10^(-4)M)时以及用L-NNA处理后再加入L-Arg的情况下,记录在无卡巴胆碱时短路电流(δISC)的变化以及在有卡巴胆碱时对跨膜电场刺激(TMS;5秒脉冲串,0.4毫秒脉冲持续时间,1 - 10赫兹)的纵向肌肉松弛情况。在对照期,δISC和肌肉松弛呈频率依赖性,在10赫兹频率下产生最大反应。河豚毒素(5×10^(-6)M)在10赫兹的TMS期间阻断肌肉松弛并使δISC降低94%。L-NNA阻断了TMS诱导的肌肉松弛,但未能改变δISC。L-Arg剂量依赖性地恢复了对TMS的肌肉松弛。在另一组8只大鼠的肠段中,饱和NO溶液使肌肉松弛,但在有或无卡巴胆碱的情况下均未能改变ISC。这些结果支持NO作为一种神经递质介导回肠平滑肌松弛,但不介导上皮细胞ISC变化的作用。

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