Sibaev A K, Akhmedzianov R Kh, Khamitov Kh S
Biull Eksp Biol Med. 1989 May;107(5):579-80.
The excitation and contraction features of innervated and sympathetically denervated smooth muscle strips from cat's nictitating membrane have been studied by single sucrose gap arrangement. Increasing of smooth muscle cells sensitivity to drugs were accompanied by elevation of membrane response and the ability to generation of action potentials. Action potentials have been induced by agonists or high potassium concentration in external solution and spontaneously. In innervated muscle action potentials have been evoked as a result of depolarization by high potassium concentration of TEA blockade of potassium conductance. Induced and spontaneously generated action potentials were blocked by organic and inorganic antagonists of potential dependent Ca++ channels. In Ca-free solution action potentials were absent but might be supported by Ba++. Decrease of Na+ had no effect on smooth muscle excitability. It is supposed that activation of potential depended Ca++ channels in smooth muscle cells with pharmaco-mechanical coupling are under influence of sympathetic nerves.
采用单蔗糖间隙装置研究了猫瞬膜神经支配和交感神经去支配的平滑肌条的兴奋和收缩特性。平滑肌细胞对药物敏感性的增加伴随着膜反应的增强以及产生动作电位的能力的提高。动作电位可由激动剂、细胞外溶液中的高钾浓度诱导产生,也可自发产生。在神经支配的肌肉中,动作电位是由于高钾浓度去极化或TEA对钾电导的阻断而诱发的。诱导产生的和自发产生的动作电位可被电压依赖性Ca++通道的有机和无机拮抗剂阻断。在无钙溶液中,动作电位消失,但可由Ba++维持。Na+的减少对平滑肌兴奋性无影响。据推测,交感神经影响下,平滑肌细胞中电压依赖性Ca++通道的激活与药物 - 机械偶联有关。