Peck Jack H, Gaier Eric, Stevens Erin, Repicky Sarah, Harris-Warrick Ronald M
Department of Psychology, Ithaca College, 1119 Williams Hall, Ithaca, NY 14850, USA.
J Neurophysiol. 2006 Dec;96(6):2931-40. doi: 10.1152/jn.00423.2005. Epub 2006 Aug 30.
We studied the functional role and modulation of the hyperpolarization-activated inward current (I(h)) in the pyloric network of the lobster stomatogastric ganglion. In isolated neurons, I(h) is a small current with a hyperpolarized voltage of half-activation (V(Act)) and a slow time constant of activation (tau(Act)). Bath application of dopamine (DA), octopamine (OCT), or serotonin (5HT) modified I(h) in selected synaptically isolated pyloric neurons. DA significantly enhanced I(h) in the anterior burster (AB) neuron by depolarizing its V(Act), accelerating its tau(Act), and enhancing its maximal conductance (g(max)). DA more weakly enhanced I(h) in the pyloric constrictor (PY) and ventricular dilator (VD) neurons. OCT weakly depolarized V(Act) and accelerated tau(Act) in the VD and inferior cardiac (IC) neurons. 5HT depolarized V(Act) in the IC neuron. Under control conditions with intact modulatory inputs from other ganglia, the pyloric rhythm cycles strongly at about 1-2 Hz. Bath application of the I(h) blocker cesium (Cs(+)) caused a mean increase in the period of 8%, although this effect was highly variable. When Cs(+) was applied to an isolated ganglion where the pyloric rhythm had been activated only by DA, the cycle period was consistently increased by 13.5%, with no other strong changes in rhythm parameters. These results suggest that I(h) regulates the pyloric rhythm by accelerating AB pacemaker frequency, but that this effect can vary with the modulatory conditions.
我们研究了龙虾口胃神经节幽门网络中超极化激活内向电流(I(h))的功能作用及其调节机制。在分离的神经元中,I(h)是一种小电流,其半激活电压(V(Act))呈超极化状态,激活时间常数(tau(Act))缓慢。在选定的突触隔离幽门神经元中,浴灌多巴胺(DA)、章鱼胺(OCT)或5-羟色胺(5HT)可改变I(h)。DA通过使前爆发神经元(AB)的V(Act)去极化、加速其tau(Act)并增强其最大电导(g(max)),显著增强了AB神经元中的I(h)。DA对幽门收缩神经元(PY)和心室扩张神经元(VD)中I(h)的增强作用较弱。OCT使VD和下心神经元(IC)的V(Act)轻度去极化并加速tau(Act)。5HT使IC神经元的V(Act)去极化。在来自其他神经节的完整调制输入的对照条件下,幽门节律以约1-2Hz的频率强烈循环。浴灌I(h)阻滞剂铯(Cs(+))使周期平均增加8%,尽管这种效应变化很大。当将Cs(+)应用于仅由DA激活幽门节律的分离神经节时,周期持续增加13.5%,节律参数没有其他明显变化。这些结果表明,I(h)通过加速AB起搏器频率来调节幽门节律,但这种效应会随调制条件而变化。