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原始神经系统:胺能药物和阻断剂对扁虫Notoplana acticola腹神经索活动的作用

Primitive nervous systems: action of aminergic drugs and blocking agents on activity in the ventral nerve cord of the flatworm Notoplana acticola.

作者信息

Keenan L, Koopowitz H, Bernardo K

出版信息

J Neurobiol. 1979 Jul;10(4):397-407. doi: 10.1002/neu.480100406.

Abstract

Electrically evoked activity in the submuscular ventral longitudinal nerve cords of Notoplana acticola is depressed by GABA and glycine in the presence of high magnesium concentrations. This inhibition occurs with 0.001--0.01 millimolar concentrations of these putative aminergic neurotransmitters and is reversible when washed out. The action of GABA and glycine was reversed nonspecifically by picrotoxin, bicuculline, and strychnine. PTZ (Pentylenetetrazole) was shown to mimic the effects that these blocking agents had on evoked activity when they were tested alone. The release of inhibition by these blocking agents is similar to that of decerebration. Three possible mechanisms responsible for synaptic activity in high Mg2+ concentrations are discussed and the possibility that the effector site of interaction may be the chloride ionophore is explored.

摘要

在高镁浓度存在的情况下,GABA和甘氨酸会抑制Acticola平角涡虫肌下腹纵神经索中的电诱发活动。这些假定的胺能神经递质在0.001 - 0.01毫摩尔浓度时会产生这种抑制作用,洗脱后这种抑制作用是可逆的。GABA和甘氨酸的作用可被印防己毒素、荷包牡丹碱和士的宁非特异性地逆转。单独测试时,戊四氮(PTZ)显示出可模拟这些阻断剂对诱发活动的影响。这些阻断剂释放抑制作用的方式与去脑作用相似。文中讨论了高镁离子浓度下负责突触活动的三种可能机制,并探讨了相互作用的效应位点可能是氯离子载体的可能性。

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