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SK 通道的调制调节功能成熟脊髓中的运动交替爆发活动。

Modulation of SK channels regulates locomotor alternating bursting activity in the functionally-mature spinal cord.

机构信息

a Department of Neuroscience , Cell Biology, and Physiology, Boonshoft School of Medicine and College of Science and Mathematics, Wright State University , Dayton , Ohio , USA.

b Department of Biomedical , Industrial, and Human Factors Engineering, College of Engineering and Computer Science, Wright State University , Dayton , Ohio , USA.

出版信息

Channels (Austin). 2018 Jan 1;12(1):9-14. doi: 10.1080/19336950.2017.1389825. Epub 2017 Nov 17.

Abstract

The spinal cord contains specialized groups of cells called pattern generators, which are capable of orchestrating rhythmic firing activity in an isolated preparation. Different patterns of activity could be generated in vitro including right-left alternating bursting and bursting in which both sides are synchronized. The cellular and network mechanisms that enable these behaviors are not fully understood. We have recently shown that Ca-activated K channels (SK channels) control the initiation and amplitude of synchronized bursting in the spinal cord. It is unclear, however, whether SK channels play a similar role in the alternating rhythmic pattern. In the current study, we used a spinal cord preparation from functionally mature mice capable of weight bearing and walking. The present results extend our previous work and show that SK channel inhibition initiates and modulates the amplitude of alternating bursting. We also show that addition of methoxamine, an α-adrenergic agonist, to a cocktail of serotonin, dopamine, and NMDA evokes robust and consistent alternating bursting throughout the cord.

摘要

脊髓包含称为模式发生器的专门细胞群,这些细胞群能够在分离的制剂中协调节律性放电活动。在体外可以产生不同的活动模式,包括左右交替爆发和两侧同步爆发。使这些行为能够发生的细胞和网络机制尚不完全清楚。我们最近表明,钙激活的钾通道(SK 通道)控制脊髓中同步爆发的起始和幅度。然而,尚不清楚 SK 通道在交替节律模式中是否发挥类似作用。在当前的研究中,我们使用了来自能够承重和行走的功能成熟的小鼠的脊髓制剂。目前的结果扩展了我们以前的工作,并表明 SK 通道抑制作用起始并调节交替爆发的幅度。我们还表明,向 5-羟色胺、多巴胺和 NMDA 的混合物中添加甲氧胺(一种α-肾上腺素能激动剂)会引起整个脊髓中强大而一致的交替爆发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/846c/5972800/bdce5b5be061/kchl-12-01-1389825-g001.jpg

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