Paparo A A
J Exp Biol. 1976 Aug;65(1):109-16. doi: 10.1242/jeb.65.1.109.
Potassium concentrations in excess of 30 mM increase the rate of beating of lateral cilia on the gill of Mytilus edulis. Cilioexcitation produced by low frequency (5 beats/s) electrical stimulation was potentiated with potassium but blocked with bromolysergic acid (a serotonergic inhibitor). Cilioinhibition produced by high frequency (50 beats/s) stimulation was decreased with potassium and phenoxybenzamine (a dopaminergic inhibitor). Phenoxybenzamine enhanced the cilioexcitation produced by potassium. Potassium doses incapable of maintaining a basal rate of beating (less than 30 mM) could increase ciliary activity if phenoxybenzamine was also added. After transection of the branchial nerve, the yellow-fluorophore (serotonergic storage) and cilioexcitatory effect of potassium gradually decrease. This study shows that the potassium effect on ciliary activity (a) increase with low frequency nerve stimulation, presumably through the release of serotonin and (b) decreases with high frequency nerve stimulation, presumably through the release of dopamine.
浓度超过30 mM的钾会提高紫贻贝鳃上侧纤毛的跳动速率。低频(5次/秒)电刺激产生的纤毛兴奋会因钾而增强,但会被溴麦角酸(一种血清素能抑制剂)阻断。高频(50次/秒)刺激产生的纤毛抑制会因钾和酚苄明(一种多巴胺能抑制剂)而减弱。酚苄明增强了钾产生的纤毛兴奋。如果同时添加酚苄明,无法维持基础跳动速率的钾剂量(低于30 mM)也能增加纤毛活动。切断鳃神经后,黄色荧光团(血清素能储存)和钾的纤毛兴奋作用会逐渐减弱。这项研究表明,钾对纤毛活动的影响:(a)在低频神经刺激下会增强,可能是通过血清素的释放;(b)在高频神经刺激下会减弱,可能是通过多巴胺的释放。