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多种抑制机制介导豚鼠结肠环行肌的非肾上腺素能非胆碱能舒张。

Multiple inhibitory mechanisms mediate non-adrenergic non-cholinergic relaxation in the circular muscle of the guinea-pig colon.

作者信息

Maggi C A, Giuliani S

机构信息

Pharmacology Department, A. Menarini Pharmaceuticals, Florence, Italy.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1993 Jun;347(6):630-4. doi: 10.1007/BF00166946.

Abstract

The mechanisms responsible for nerve-mediated, non-adrenergic, non-cholinergic (NANC) relaxation in mucosa-free circular muscle strips from the proximal colon of the guinea-pig were investigated. Electrical field stimulation (EFS, 1-20 Hz, trains of 5 s duration, 100 V, 0.25 ms pulse width) in the presence of atropine (1 mumol/l) and guanethidine (3 mumol/l) evoked a triphasic motor response consisting of: (a) a primary relaxation, (b) a rebound contraction and (c) a secondary relaxation. These three responses were abolished by tetrodotoxin (1 mumol/l). B oth apamin (0.01-0.3 mumol/l), a known blocker of low conductance, calcium-activated potassium channels in smooth muscles, and L-nitro-arginine (L-NOARG) (1-100 mumol/l), a known blocker of nitric oxide (NO) synthase, increased the tone of the strips. Maximum effects on tone were observed with 0.1 mumol/l apamin (21 +/- 3% of KCl-induced contraction) and 30 mumol/l L-NOARG (26 +/- 4% of KCl response). The combined administration of 0.1 mumol/l apamin and 30 mumol/l L-NOARG produced an increase in tone (47 +/- 5% of KCl response) that was larger than that produced by either compound alone. Neither apamin (0.1 mumol/l) nor L-NOARG (30 mumol/l) affected the isoprenaline-induced relaxation. Apamin (0.1 mumol/l) depressed, but did not abolish, the primary relaxation to EFS at all frequencies without affecting the secondary relaxation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了豚鼠近端结肠无黏膜环行肌条中神经介导的非肾上腺素能、非胆碱能(NANC)舒张的机制。在阿托品(1 μmol/L)和胍乙啶(3 μmol/L)存在的情况下,电场刺激(EFS,1 - 20 Hz,持续5秒的串刺激,100 V,0.25毫秒脉冲宽度)诱发了一种三相运动反应,包括:(a)一次舒张,(b)一次反跳性收缩和(c)二次舒张。这三种反应均被河豚毒素(1 μmol/L)消除。蜂毒明肽(0.01 - 0.3 μmol/L)是平滑肌中低电导钙激活钾通道的已知阻断剂,L - 硝基精氨酸(L - NOARG)(1 - 100 μmol/L)是一氧化氮(NO)合酶的已知阻断剂,两者均增加了肌条的张力。在0.1 μmol/L蜂毒明肽(氯化钾诱导收缩的21±3%)和30 μmol/L L - NOARG(氯化钾反应的26±4%)时观察到对张力的最大影响。联合给予0.1 μmol/L蜂毒明肽和30 μmol/L L - NOARG使张力增加(氯化钾反应的47±5%),大于单独使用任何一种化合物所产生的增加幅度。蜂毒明肽(0.1 μmol/L)和L - NOARG(30 μmol/L)均不影响异丙肾上腺素诱导的舒张。蜂毒明肽(0.1 μmol/L)降低但未消除所有频率下对EFS的一次舒张,且不影响二次舒张。(摘要截短于250字)

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