Hooper S L, Marder E
J Neurosci. 1987 Jul;7(7):2097-112. doi: 10.1523/JNEUROSCI.07-07-02097.1987.
The modulation of the pyloric network of the stomatogastric ganglion (STG) of the lobster Panulirus interruptus by the neuropeptide proctolin is described. First, the effects of proctolin on the pyloric motor patterns were characterized in terms of frequency and phase relations. Pyloric cycle frequency and lateral pyloric (LP) neuron activity increased and ventricular dilator (VD) neuron activity decreased with increasing concentrations (10(-9)-10(-6) M) of applied proctolin. Next, the effects of proctolin on the individual neurons that constitute the pyloric network were determined. Identified neurons were isolated from chemical and electrical presynaptic inputs by using pharmacological agents (Marder and Eisen, 1984a) and/or photoinactivation following Lucifer yellow injection (Miller and Selverston, 1979). Proctolin increased the amplitude and frequency of bursts produced by isolated pacemaker anterior burster (AB) neurons. Isolated LP and pyloric (PY) neurons responded to proctolin with increases in activity only when they were at or above threshold. All other pyloric neurons were unaffected. To determine how the direct effects of proctolin on isolated neurons resulted in the observed changes in frequency and phase relations in the motor pattern of the intact pyloric circuit seen in proctolin, individual neurons were deleted from the circuit. A comparison of proctolin's effects on isolated neurons with those on the intact network shows that the synaptic connectivity among neurons directly affected by proctolin and those unaffected by it shapes the network's response to proctolin.
本文描述了神经肽促肠动素对断沟龙虾口胃神经节(STG)幽门神经网络的调节作用。首先,从频率和相位关系方面对促肠动素对幽门运动模式的影响进行了表征。随着所施加促肠动素浓度(10⁻⁹ - 10⁻⁶ M)的增加,幽门循环频率和外侧幽门(LP)神经元活动增强,而心室扩张器(VD)神经元活动减弱。接下来,确定了促肠动素对构成幽门网络的单个神经元的影响。通过使用药理学试剂(Marder和Eisen,1984a)和/或注射荧光黄后的光灭活(Miller和Selverston,1979),将已识别的神经元与化学和电突触前输入隔离开来。促肠动素增加了分离出的起搏器前爆发神经元(AB)产生的爆发的幅度和频率。分离出的LP和幽门(PY)神经元仅在其处于阈值或高于阈值时才对促肠动素有反应,活动增加。所有其他幽门神经元均未受影响。为了确定促肠动素对分离神经元的直接作用如何导致在促肠动素作用下完整幽门回路运动模式中观察到的频率和相位关系变化,从回路中删除了单个神经元。将促肠动素对分离神经元的作用与对完整网络的作用进行比较表明,受促肠动素直接影响的神经元与未受其影响的神经元之间的突触连接性塑造了网络对促肠动素的反应。