首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Inhibition of cholinergic neurotransmission in guinea pig trachea by NS1619, a putative activator of large-conductance, calcium-activated potassium channels.
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Inhibition of cholinergic neurotransmission in guinea pig trachea by NS1619, a putative activator of large-conductance, calcium-activated potassium channels.

机译:NS1619抑制豚鼠气管中胆碱能神经传递,NS1619是大传导性钙激活钾通道的假定激活剂。

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摘要

Indirect functional studies suggest that large-conductance calcium-activated potassium channels (BKCa channels) are involved in the control of ACh release from postganglionic, parasympathetic nerve terminals in the airways. The role of BKCa channels in regulating cholinergic neurotransmission was assessed by 1) investigating the effect of the putative BKCa channel opener NS1619 on cholinergic contractile responses and ACh output evoked by electrical field stimulation (EFS: 40 V, 0.5 ms, 4 Hz for 15 s every 4 min) and comparing the effect obtained with the inhibition of EFS-evoked ACh release by oxotremorine M, a muscarinic agonist, and 2) evaluating the sensitivity of these responses to the BKCa channel blocker iberiotoxin (IbTX). NS1619 (30 microM) inhibited cholinergic contractile responses by 60.0%. In contrast, NS1619 had no effect on contractile responses evoked by exogenous ACh (1 microM), which indicated that it was acting prejunctionally. NS1619 (30 microM) significantly inhibited EFS-induced ACh release by 33.9%. Oxotremorine M suppressed EFS-evoked ACh release in a concentration-dependent manner (at 1 microM, 77.4% inhibition). In neither case was the inhibition reversed by IbTX (100 nM). Collectively, the mechanical data suggest that NS1619 inhibits cholinergic contractile responses by interacting prejunctionally. The failure of IbTX to reverse the inhibitory action of NS1619 and oxotremorine M on ACh release indicates that activation of muscarinic autoinhibitory receptors is not coupled to the opening of IbTX-sensitive BKCa channels. Therefore, we propose that caution be exercised when using NS1619 as an activator of BKCa channels.
机译:间接功能研究表明,大电导钙激活钾通道(BKCa通道)参与了从气管节后副交感神经末梢释放ACh的控制。通过以下方法评估BKCa通道在调节胆碱能神经传递中的作用:1)研究推定的BKCa通道开放剂NS1619对电场刺激(EFS:40 V,0.5 ms,4 Hz,15 s)诱发的胆碱能收缩反应和ACh输出的影响每4分钟),并比较毒蕈碱激动剂oxotremorine M对EFS诱发的ACh释放的抑制作用;以及2)评估这些反应对BKCa通道阻滞剂纤毛毒素(IbTX)的敏感性。 NS1619(30 microM)抑制胆碱能收缩反应60.0%。相比之下,NS1619对外源性ACh(1 microM)引起的收缩反应没有影响,这表明它在连接时起作用。 NS1619(30 microM)显着抑制EFS诱导的ACh释放33.9%。 Oxotremorine M以浓度依赖性方式抑制EFS诱发的ACh释放(在1 microM,抑制率为77.4%)。在两种情况下,IbTX(100 nM)均不能逆转抑制作用。总体而言,力学数据表明NS1619通过结节相互作用来抑制胆碱能的收缩反应。 IbTX未能逆转NS1619和氧代苯甲酸M对ACh释放的抑制作用,表明毒蕈碱自抑制受体的激活并不与IbTX敏感的BKCa通道的开放有关。因此,我们建议在使用NS1619作为BKCa通道激活剂时要格外小心。

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