Cheung D W
Pflugers Arch. 1984 Mar;400(3):335-7. doi: 10.1007/BF00581570.
Stimulation of the perivascular nerves elicited two types of electrical responses in the rat tail artery - excitatory junction potentials (e.j.p.s) and slow depolarization - and two types of mechanical responses - fast and slow contractions. Fast phasic contractions were triggered whenever action potentials were generated from either the e.j.p. or the slow depolarization reaching threshold. Slow tonic contractions and slow depolarization were sensitive to alpha-adrenergic blockade. However the slow contraction always preceded the slow depolarization. Bolus doses of exogenous noradrenaline also induced slow contraction and slow depolarization and the development of tension also preceded the membrane potential change. Increasing the external KCl also induced membrane depolarization however, contractions were not observed until the membrane was depolarized positive of -49 mV. In contrast, tension developed readily with membrane potential more negative than -49 mV with exogenous noradrenaline and neural stimulation, suggesting that the action of noradrenaline was not mediated by electromechanical coupling. It was concluded that vascular activity in the rat tail artery could be regulated by the e.j.p., the slow depolarization and also by pharmacomechanical coupling.
刺激血管周围神经可在大鼠尾动脉诱发两种电反应——兴奋性接头电位(e.j.p.s)和缓慢去极化,以及两种机械反应——快速和缓慢收缩。每当由e.j.p.或达到阈值的缓慢去极化产生动作电位时,就会引发快速相收缩。缓慢的紧张性收缩和缓慢去极化对α-肾上腺素能阻断敏感。然而,缓慢收缩总是先于缓慢去极化。大剂量外源性去甲肾上腺素也可诱导缓慢收缩和缓慢去极化,张力的产生也先于膜电位变化。增加细胞外氯化钾也可诱导膜去极化,然而,直到膜去极化至-49 mV正值时才观察到收缩。相反,在外源性去甲肾上腺素和神经刺激下,当膜电位比-49 mV更负时,张力很容易产生,这表明去甲肾上腺素的作用不是通过机电偶联介导的。得出的结论是,大鼠尾动脉的血管活动可由e.j.p.、缓慢去极化以及药物机械偶联来调节。