Delfs J R, Dichter M A
J Neurosci. 1983 Jun;3(6):1176-88. doi: 10.1523/JNEUROSCI.03-06-01176.1983.
Somatostatin was applied to rat cortical neurons grown in dispersed cell culture while electrophysiological effects were monitored with intracellular recordings. The effects of somatostatin were predominantly excitatory, but they varied and were dose dependent. Somatostatin at concentrations between 100 pM and 1 microM depolarized 30 of 87 neurons, often with a concomitant increase in spontaneous action potentials and a small increase in membrane input resistance. Somatostatin also increased the frequency of synaptic activity coming into the recorded neuron in 45 of 78 recordings, an effect which was seen even in the absence of direct effects. In six of nine neurons, somatostatin decreased the amplitude of large ongoing inhibitory synaptic potentials, concomitant with an increase in membrane input resistance. Somatostatin occasionally caused inhibition of neuronal activity, an effect predominantly associated with the application of higher concentrations. The unpredictability of the response of an individual neuron to somatostatin is partially explained by three phenomena: a marked tachyphylaxis, an inverted U-shaped dose response curve for membrane depolarization, and qualitatively different responses depending on the concentration of somatostatin. These findings show that somatostatin is predominantly an excitatory agent when applied to cortical neurons, but it may cause several different changes in membrane properties. The dose response data suggest a considerable complexity of the actions of somatostatin at a cellular level.
将生长抑素应用于分散细胞培养的大鼠皮层神经元,同时用细胞内记录监测其电生理效应。生长抑素的作用主要是兴奋性的,但存在差异且呈剂量依赖性。浓度在100皮摩尔至1微摩尔之间的生长抑素使87个神经元中的30个发生去极化,通常伴随着自发动作电位的增加和膜输入电阻的小幅增加。在78次记录中的45次中,生长抑素还增加了传入被记录神经元的突触活动频率,即使在没有直接效应的情况下也能观察到这种效应。在9个神经元中的6个中,生长抑素降低了持续存在的大抑制性突触电位的幅度,同时膜输入电阻增加。生长抑素偶尔会导致神经元活动受到抑制,这种效应主要与较高浓度的应用有关。单个神经元对生长抑素反应的不可预测性部分可由三种现象来解释:明显的快速耐受性、膜去极化的倒U形剂量反应曲线以及取决于生长抑素浓度的质的不同反应。这些发现表明,生长抑素应用于皮层神经元时主要是一种兴奋性因子,但它可能会引起膜特性的几种不同变化。剂量反应数据表明生长抑素在细胞水平上的作用相当复杂。