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章鱼胺促进蜗牛运动:行为学与细胞分析

Octopamine boosts snail locomotion: behavioural and cellular analysis.

作者信息

Ormshaw Jennifer C, Elliott Christopher J H

机构信息

Department of Biology, University of York, P.O. Box 373, York , YO10 5YW, UK.

出版信息

Invert Neurosci. 2006 Dec;6(4):215-20. doi: 10.1007/s10158-006-0031-1. Epub 2006 Oct 28.

Abstract

We measured the reduction in locomotion of unrestrained pond snails, Lymnaea stagnalis, subsequent to transdermal application of two selective octopamine antagonists, epinastine and phentolamine. After 3 h in fresh standard snail water following treatment with 4 mM epinastine or 3.5 mM phentolamine, the snails' speed was reduced to 25 and 56% of the controls (P < 0.001 and P = 0.02, respectively). The snails' speed decreased as the drug concentration increased. In the isolated CNS, 0.5 mM octopamine increased the firing rate of the pedal A cluster motoneurons, which innervate the cilia of the foot. In normal saline the increase was 26% and in a high magnesium/low calcium saline 22% (P < 0.05 and 0.01, respectively). We conclude that octopamine is likely to modulate snail locomotion, partially through effects on pedal motoneurons.

摘要

我们测量了经皮应用两种选择性章鱼胺拮抗剂(依匹斯汀和酚妥拉明)后,未受束缚的椎实螺(Lymnaea stagnalis)运动能力的下降情况。在用4 mM依匹斯汀或3.5 mM酚妥拉明处理后,于新鲜标准蜗牛水中放置3小时,蜗牛的速度分别降至对照组的25%和56%(P分别<0.001和P = 0.02)。蜗牛的速度随药物浓度增加而降低。在离体中枢神经系统中,0.5 mM章鱼胺增加了支配足部纤毛的足A簇运动神经元的放电频率。在正常盐溶液中增加了26%,在高镁/低钙盐溶液中增加了22%(P分别<0.05和0.01)。我们得出结论,章鱼胺可能部分通过对足运动神经元的作用来调节蜗牛的运动。

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