首页> 外文期刊>The Journal of Veterinary Medical Science >Involvement of transient receptor potential melastatin 4 channels in the resting membrane potential setting and cholinergic contractile responses in mouse detrusor and ileal smooth muscles
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Involvement of transient receptor potential melastatin 4 channels in the resting membrane potential setting and cholinergic contractile responses in mouse detrusor and ileal smooth muscles

机译:瞬时受体电位褪黑素4通道参与静息膜电位设置和小鼠逼尿肌和回肠平滑肌的胆碱能收缩反应

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Here, we investigated the effects of 9-hydroxyphenanthrene (9-phenanthrol), a potent and selective transient receptor potential melastatin 4 (TRPM4) channel blocker, on the resting membrane potential and cholinergic contractile responses to elucidate the functional role of TRPM4 channels in the contractile activities of mouse detrusor and ileal longitudinal smooth muscles. We observed that, 9-phenanthrol (3–30 μM) did not significantly inhibit high K+-induced contractions in both preparations; however, 9-phenanthrol (10 μM) strongly inhibited cholinergic contractions evoked by electrical field stimulation in detrusor preparations compared to inhibitions in ileal preparations. 9-Phenanthrol (10 μM) significantly inhibited the muscarinic agonist, carbachol-induced contractile responses and slowed the maximum upstroke velocities of the contraction in detrusor preparations. However, the agent (10 μM) did not inhibit the contractions due to intracellular Ca2+ release evoked by carbachol, suggesting that the inhibitory effect of 9-phenanthrol may primarily be due to the inhibition of the membrane depolarization process incurred by TRPM4 channels. On the other hand, 9-phenanthrol (10 μM) did not affect carbachol-induced contractile responses in ileal preparations. Further, 9-phenanthrol (10 μM) significantly hyperpolarized the resting membrane potential and decreased the basal tone in both detrusor and ileal muscle preparations. Taken together, our results suggest that TRPM4 channels are constitutively active and are involved in setting of the resting membrane potential, thereby regulating the basal tone in detrusor and ileal smooth muscles. Thus, TRPM4 channels play a significant role in cholinergic signaling in detrusor, but not ileal, smooth muscles.
机译:在这里,我们研究了9-羟基菲(9-菲咯啉)(一种有效的选择性瞬时受体电位褪黑素4(TRPM4)通道阻滞剂)对静息膜电位和胆碱能收缩反应的影响,以阐明TRPM4通道在大鼠体内的功能作用。小鼠逼尿肌的收缩活动和回肠纵向平滑肌。我们观察到,两种制剂中9-菲咯啉(3–30μM)均未显着抑制高K +诱导的收缩。然而,与回肠制剂相比,9-菲咯啉(10μM)可以强烈抑制逼尿肌制剂中电场刺激引起的胆碱能收缩。 9-菲咯啉(10μM)显着抑制毒蕈碱激动剂,卡巴胆碱引起的收缩反应,并减慢了逼尿肌制剂中收缩的最大上冲程速度。但是,该试剂(10μM)没有抑制由于卡巴胆碱引起的细胞内Ca2 +释放而引起的收缩,这表明9-菲咯啉的抑制作用可能主要是由于TRPM4通道引起的膜去极化过程的抑制。另一方面,在回肠制剂中9-菲咯啉(10μM)不影响卡巴胆碱引起的收缩反应。此外,在逼尿肌和回肠肌制剂中,9-菲咯啉(10μM)显着超极化静息膜电位并降低基础张力。两者合计,我们的结果表明,TRPM4通道具有组成性活性,并参与静息膜电位的设定,从而调节逼尿肌和回肠平滑肌的基础张力。因此,TRPM4通道在逼尿肌胆碱能信号传导中起着重要作用,但在回肠平滑肌中却不起作用。

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