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Effects of endogenous and exogenous noradrenaline on the smooth muscle of guinea-pig mesenteric vein

机译:内源性和外源性去甲肾上腺素对豚鼠肠系膜静脉平滑肌的影响

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摘要

Membrane responses of smooth muscles of the guinea-pig mesenteric vein to noradrenaline released from perivascular nerves or applied exogenously were investigated.1. Exogenously applied noradrenaline depolarized the muscle membrane at concentrations of over 10-6 m, and generated slow waves or action potentials. Application of phentolamine but not propranolol suppressed the depolarization.2. The depolarization induced by exogenous noradrenaline was associated with increase in the membrane resistance. The level of the membrane depolarization was modified by changing [K]o, but not by [Na]o or [Cl]o.3. Repetitive but not single stimulation of the nerves produced slow depolarization of the membrane. The amplitude of the slow depolarization was dependent on the frequency or number of stimuli within a certain range, but beyond this an increased frequency or an increased number of stimulating pulses produced no further increase in amplitude of the slow depolarization.4. The slow depolarization induced by nerve stimulation was analysed in relation to the diffusion of transmitter. The rising phase of the slow depolarization fitted well with the theoretically predicted one, while the falling phase did not.5. Stimulation of nerves with a high frequency and a large number of pulses produced slow waves or action potentials superimposed on the slow depolarization of the membrane.6. Membrane responses induced by nerve stimulation did not appear in the presence of TTX or phentolamine. TEA enhanced the nerve-induced responses.7. Myogenic electrical activities insensitive to TTX and phentolamine were recorded from the mesenteric vein. These activities were induced by nerve stimulation only in the fresh tissues, were usually irregular in shape, size and frequency, and lasted for 5-20 min.8. It was concluded that alpha-adrenergic receptors on the muscle membrane reacted in a similar manner to noradrenaline either released from the nerves or applied exogenously. Noradrenaline depolarized the muscle membrane by the decrease in potassium conductance of the membrane.
机译:研究了豚鼠肠系膜静脉平滑肌对血管周围神经释放或外用去甲肾上腺素的膜反应。1。外源性去甲肾上腺素以超过10 -6 m的浓度使肌膜去极化,并产生慢波或动作电位。酚妥拉明而不是普萘洛尔的应用抑制了去极化。2。外源性去甲肾上腺素引起的去极化与膜电阻的增加有关。膜的去极化水平通过改变[K] o而不是通过[Na] o或[Cl] o.3来改变。重复但不是单一的神经刺激会导致膜的缓慢去极化。缓慢去极化的幅度取决于一定范围内的刺激频率或次数,但是超过此频率,刺激脉冲的频率增加或数量增加,不会进一步降低缓慢去极化的幅度。4。分析了神经刺激引起的缓慢去极化与递质扩散的关系。慢速去极化的上升阶段与理论上的预测相吻合,而下降阶段则没有。5。高频刺激神经并产生大量脉冲会在膜的缓慢去极化上叠加慢波或动作电位6。在TTX或酚妥拉明的存在下,没有出现由神经刺激引起的膜反应。 TEA增强了神经诱导的反应7。从肠系膜静脉记录对TTX和酚妥拉明不敏感的肌电活动。这些活动仅通过神经刺激在新鲜组织中诱导,通常在形状,大小和频率上是不规则的,持续5-20分钟。8。结论是,肌肉膜上的α-肾上腺素能受体与去甲肾上腺素以类似的方式从神经释放或外源施加。去甲肾上腺素通过降低膜的钾电导使肌膜去极化。

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