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脑啡肽抑制培养的感觉神经元中P物质的释放,并缩短动作电位持续时间。

Enkephalin inhibits release of substance P from sensory neurons in culture and decreases action potential duration.

作者信息

Mudge A W, Leeman S E, Fischbach G D

出版信息

Proc Natl Acad Sci U S A. 1979 Jan;76(1):526-30. doi: 10.1073/pnas.76.1.526.

Abstract

Sensory neurons grown in dispersed cell culture in the absence of non-neuronal cell types contain immunoreactive substance P that is chemically similar to synthetic substance P. When depolarized in high-K+ media (30-120 mM), the neurons release this peptide by a Ca2+-dependent mechanism. An enkephalin analogue, [D-Ala2]enkephalin amide, at 10 micron inhibits the K+-evoked release of substance P. At the same or lower concentrations, [D-Ala2]enkephalin amide and enkephalin decrease the duration of the Ca2+ action potential evoked and recorded in dorsal root ganglion cell bodies without affecting the resting membrane potential or resting membrane conductance. This modulation of voltage-sensitive channels may account for the inhibition of substance P release.

摘要

在无非神经元细胞类型的分散细胞培养中生长的感觉神经元含有免疫反应性P物质,其化学性质与合成P物质相似。当在高钾培养基(30 - 120 mM)中去极化时,神经元通过钙依赖机制释放这种肽。一种脑啡肽类似物,[D - Ala2]脑啡肽酰胺,在10微摩尔浓度时抑制钾离子诱发的P物质释放。在相同或更低浓度下,[D - Ala2]脑啡肽酰胺和脑啡肽可缩短背根神经节细胞体中诱发并记录到的钙动作电位的持续时间,而不影响静息膜电位或静息膜电导。电压敏感通道的这种调节作用可能是P物质释放受到抑制的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da6e/382975/35c5d1f7d956/pnas00001-0535-a.jpg

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