Smooth Muscle Research Centre, Dundalk Institute of Technology, Dundalk, Ireland.
Br J Pharmacol. 2022 Mar;179(5):1082-1101. doi: 10.1111/bph.15728. Epub 2021 Dec 16.
Corpus cavernosum smooth muscle (CCSM) exhibits phasic contractions that are coordinated by ion channels. Mouse models are commonly used to study erectile dysfunction, but there are few published electrophysiological studies of mouse CCSM. We describe the voltage-dependent sodium (Na ) currents in mouse CCSM and investigate their function.
We used electrophysiological, pharmacological and immunocytochemical methods to study the Na currents in isolated CCSM cells from C57BL/6 mice. Tension measurements were carried out using crural sections of the corpus cavernosum in whole tissue.
Fast, voltage-dependent, sodium currents in mouse CCSM were induced by depolarising steps. Steady-state activation and inactivation curves revealed a window current between -60 and -30 mV. Two populations of Na currents, 'TTX-sensitive' and 'TTX-insensitive', were identified. TTX-sensitive currents showed 48% block with the Na channel subtype-specific blockers ICA-121431 (Na 1.1-1.3), PF-05089771 (Na 1.7) and 4,9-anhydro-TTX (Na 1.6). TTX-insensitive currents were resistant to blockade by A803467, specific for Na 1.8 channels. Immunocytochemistry confirmed expression of Na 1.5 and Na 1.4 in freshly dispersed CCSM cells. Veratridine, a Na channel activator, reduced time-dependent inactivation of Na currents and increased duration of evoked action potentials. Veratridine induced phasic contractions in CCSM strips, reversible with TTX and nifedipine but not KB-R7943.
There are fast, voltage-dependent, sodium currents in mouse CCSM. Stimulation of these currents increased contractility of CCSM in vitro, suggesting an involvement in detumescence and potentially providing a clinically relevant target in erectile dysfunction. Further work will be necessary to define its role.
海绵体平滑肌(CCSM)表现出由离子通道协调的相位收缩。小鼠模型常用于研究勃起功能障碍,但很少有关于小鼠 CCSM 的电生理研究发表。我们描述了小鼠 CCSM 中的电压依赖性钠(Na+)电流,并研究了它们的功能。
我们使用电生理学、药理学和免疫细胞化学方法研究了来自 C57BL/6 小鼠的分离的 CCSM 细胞中的 Na 电流。使用整个组织中的海绵体阴茎节段进行张力测量。
用去极化步骤诱导小鼠 CCSM 中的快速、电压依赖性、钠离子电流。稳态激活和失活曲线显示在-60 至-30 mV 之间存在窗口电流。鉴定出两种 Na 电流群体,“TTX 敏感”和“TTX 不敏感”。TTX 敏感电流对 Na 通道亚型特异性阻滞剂 ICA-121431(Na 1.1-1.3)、PF-05089771(Na 1.7)和 4,9-anhydro-TTX(Na 1.6)的阻断作用为 48%。TTX 不敏感电流对 Na 1.8 通道特异性阻滞剂 A803467 具有抗性。免疫细胞化学证实 Na 1.5 和 Na 1.4 在新鲜分散的 CCSM 细胞中表达。作为 Na 通道激活剂的藜芦碱降低了 Na 电流的时间依赖性失活,并增加了诱发动作电位的持续时间。藜芦碱诱导 CCSM 条带的相位收缩,用 TTX 和硝苯地平可逆,但不能用 KB-R7943 可逆。
在小鼠 CCSM 中有快速、电压依赖性的钠离子电流。刺激这些电流增加了 CCSM 的体外收缩性,表明其参与了勃起消退,并可能为勃起功能障碍提供了一个具有临床相关性的靶点。还需要进一步的工作来确定其作用。