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首页> 外文期刊>Pharmacology: International Journal of Experimental and Clinical Pharmacology >Regulators involved in the electrically stimulated response of feline esophageal smooth muscle.
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Regulators involved in the electrically stimulated response of feline esophageal smooth muscle.

机译:调节剂参与猫食管平滑肌的电刺激反应。

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In this study, we investigated the components of electrical field stimulation (EFS)-induced responses and the intracellular factors that mediate electrically stimulated responses in feline distal esophageal smooth muscles. Muscle contractions were recorded using an isometric force transducer. Low-frequency EFS induced only off-contraction, but induced on-contraction in the presence of N(G)-nitro-L-arginine methyl ester, suggesting that nitric oxide acts as an inhibitory mediator in smooth muscle. The excitatory composition of both contractions was cholinergic, because of their abolishment by tetrodotoxin or atropine. The off-contraction was abolished in Ca(2+)-free buffer but reappeared in normal Ca(2+)-containing buffer. ML-9, a myosin light chain kinase (MLCK) inhibitor, significantly inhibited off-contraction, whereas chelerythrine (protein kinase C inhibitor) did not affect the contraction. Aluminum fluoride (a G-protein activator) increased off-contraction. Pertussis toxin (a G(i/o) inactivator) and C3 exoenzyme (a RhoA inactivator) significantly decreased off-contraction. Furthermore, 4-aminopyridine (4-AP), voltage-dependent K(+) (K(v)) channel blocker, did not significantly enhance off-contraction. These results suggest that cholinergic nerves and nitric oxide are major intrinsic contributors to the control of feline distal esophageal smooth muscle motility, and that endogenous cholinergic contractions activated directly by low-frequency EFS may be mediated by external Ca(2+), MLCK, and G proteins, such as G(i/o) and RhoA. Furthermore, our findings suggest that K(+) current via 4-AP-sensitive K(+) (including K(v)) channels is not a major participant in the endogenous cholinergic contractions induced by EFS in feline distal esophageal smooth muscle.
机译:在这项研究中,我们调查了电场刺激(EFS)诱导反应的成分以及介导猫远端食管平滑肌中电刺激反应的细胞内因子。使用等轴测力传感器记录肌肉收缩情况。低频EFS仅诱导收缩,但在N(G)-硝基-L-精氨酸甲酯存在下诱导收缩,这表明一氧化氮在平滑肌中起抑制介质的作用。两种收缩的兴奋性组成是胆碱能的,因为它们被河豚毒素或阿托品消除了。在非Ca(2+)的缓冲区中取消了off-contract,但在正常的含Ca(2+)的缓冲区中重新出现了。肌球蛋白轻链激酶(MLCK)抑制剂ML-9显着抑制收缩,而白屈菜红碱(蛋白激酶C抑制剂)不影响收缩。氟化铝(一种G蛋白激活剂)增加了收缩。百日咳毒素(一种G(i / o)灭活剂)和C3外酶(一种RhoA灭活剂)显着减少了收缩。此外,4-氨基吡啶(4-AP),电压依赖性K(+)(K(v))通道阻滞剂,并未显着增强收缩力。这些结果表明胆碱能神经和一氧化氮是控制猫远端食管平滑肌运动的主要内在因素,而低频EFS直接激活的内源胆碱能收缩可能是由外部Ca(2 +),MLCK和G蛋白,例如G(i / o)和RhoA。此外,我们的研究结果表明,通过4-AP敏感的K(+)(包括K(v))通道的K(+)电流不是猫远端食管平滑肌EFS诱导的内源胆碱能收缩的主要参与者。

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