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在完整神经组织的肽能神经元中,放电后膜去极化和胞质钙升高后,神经激素分泌仍会持续。

Neurohormone secretion persists after post-afterdischarge membrane depolarization and cytosolic calcium elevation in peptidergic neurons in intact nervous tissue.

作者信息

Michel Stephan, Wayne Nancy L

机构信息

Department of Physiology, David Geffin School of Medicine at University of California at Los Angeles, Los Angeles, California 90095, USA.

出版信息

J Neurosci. 2002 Oct 15;22(20):9063-9. doi: 10.1523/JNEUROSCI.22-20-09063.2002.

Abstract

The purpose of this work was to test the hypothesis that an electrical afterdischarge (AD) causes prolonged elevation in cytosolic calcium levels that is associated with prolonged secretion of egg-laying hormone (ELH) from peptidergic neurons in intact nervous tissue of Aplysia. Using a combination of radioimmunoassay measurement of ELH secretion, electrophysiological measurement of membrane potential, and optical imaging of the concentration of intracellular free calcium ions ([Ca2+]i), we verified that there was persistent secretion of ELH after the end of the AD; this was accompanied by prolonged post-AD membrane depolarization and prolonged post-AD elevation in [Ca2+]i. Extracellular treatment with the calcium chelator EGTA had no effect on the pattern or magnitude of ELH secretion or on the post-AD membrane potential (V(m)) and post-AD Ca2+ signal, ruling out a role for extracellular calcium in the post-AD elevation of [Ca2+]i. Both V(m) and [Ca2+]i returned to baseline well before ELH secretion, such that neither prolonged membrane depolarization nor prolonged Ca2+ signaling can fully account for the extent of the persistent secretion of ELH. These findings suggest a unique relationship between membrane excitability, Ca2+ signaling, and prolonged neuropeptide secretion.

摘要

这项工作的目的是验证以下假设

电刺激后放电(AD)会导致胞质钙水平长时间升高,这与海兔完整神经组织中肽能神经元长时间分泌产卵激素(ELH)有关。通过结合使用放射免疫分析法测量ELH分泌、膜电位的电生理测量以及细胞内游离钙离子浓度([Ca2+]i)的光学成像,我们证实了在AD结束后仍有ELH的持续分泌;这伴随着AD后膜去极化的延长以及AD后[Ca2+]i的升高。用钙螯合剂EGTA进行细胞外处理对ELH分泌的模式或幅度、AD后膜电位(V(m))以及AD后Ca2+信号均无影响,排除了细胞外钙在AD后[Ca2+]i升高中的作用。V(m)和[Ca2+]i在ELH分泌之前就已恢复到基线水平,因此延长的膜去极化和延长的Ca2+信号传导都不能完全解释ELH持续分泌的程度。这些发现表明膜兴奋性、Ca2+信号传导和神经肽的持续分泌之间存在独特的关系。

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