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血脑屏障的破坏会加剧蝗虫中枢神经系统中的扩散性抑制。

Disruption of the blood-brain barrier exacerbates spreading depression in the locust CNS.

作者信息

Spong Kristin E, Rochon-Terry Geneviève, Money Tomas G A, Robertson R Meldrum

机构信息

Department of Biology, Queen's University, Kingston, Ontario K7L 3N6, Canada.

Department of Biology, Queen's University, Kingston, Ontario K7L 3N6, Canada.

出版信息

J Insect Physiol. 2014 Jul;66:1-9. doi: 10.1016/j.jinsphys.2014.05.009. Epub 2014 May 14.

DOI:10.1016/j.jinsphys.2014.05.009
PMID:24837786
Abstract

In response to cellular stress in the nervous system of the locust (Locusta migratoria) neural function is interrupted in association with ionic disturbances propagating throughout nervous tissue (Spreading depression; SD). The insect blood-brain barrier (BBB) plays a critical role in the regulation of ion levels within the CNS. We investigated how a disruption in barrier function by transient exposure to 3M urea affects locusts' vulnerability to disturbances in ion levels. Repetitive SD was induced by bath application of ouabain and the extracellular potassium concentration ([K(+)]o) within the metathoracic ganglion (MTG) was monitored. Urea treatment increased the susceptibility to ouabain and caused a progressive impairment in the ability to maintain baseline [K(+)]o levels during episodes of repetitive SD. Additionally, using a within animal protocol we demonstrate that waves of SD, induced by high K(+), propagate throughout the MTG faster following disruption of the BBB. Lastly, we show that targeting the BBB of intact animals reduces their ability to sustain neural function during anoxic conditions. Our findings indicate that locust's ability to withstand stress is diminished following a reduction in barrier function likely due to an impairment of the ability of neural tissue to maintain ionic gradients.

摘要

针对蝗虫(飞蝗)神经系统中的细胞应激,神经功能会随着离子紊乱在整个神经组织中传播(扩散性抑制;SD)而中断。昆虫血脑屏障(BBB)在中枢神经系统内离子水平的调节中起关键作用。我们研究了短暂暴露于3M尿素导致的屏障功能破坏如何影响蝗虫对离子水平紊乱的易感性。通过在浴槽中施加哇巴因诱导重复性SD,并监测后胸神经节(MTG)内的细胞外钾浓度([K(+)]o)。尿素处理增加了对哇巴因的敏感性,并在重复性SD发作期间导致维持基线[K(+)]o水平的能力逐渐受损。此外,使用动物体内实验方案,我们证明了高钾诱导的SD波在血脑屏障破坏后在整个MTG中传播得更快。最后,我们表明针对完整动物的血脑屏障会降低它们在缺氧条件下维持神经功能的能力。我们的研究结果表明,屏障功能降低后,蝗虫承受压力的能力会减弱,这可能是由于神经组织维持离子梯度的能力受损所致。

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引用本文的文献

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eNeuro. 2018 Jul 16;5(4). doi: 10.1523/ENEURO.0116-18.2018. eCollection 2018 Jul-Aug.
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Spreading depolarization triggered by elevated potassium is weak or absent in the rodent lower brain.由钾升高引发的扩散性去极化在啮齿动物的低位脑区中较弱或不存在。
J Cereb Blood Flow Metab. 2017 May;37(5):1735-1747. doi: 10.1177/0271678X16657344. Epub 2016 Jan 1.
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Spreading depolarization in the brain of Drosophila is induced by inhibition of the Na+/K+-ATPase and mitigated by a decrease in activity of protein kinase G.
果蝇大脑中的扩散性去极化是由钠钾ATP酶的抑制所诱导,并通过蛋白激酶G活性的降低而减轻。
J Neurophysiol. 2016 Sep 1;116(3):1152-60. doi: 10.1152/jn.00353.2016. Epub 2016 Jun 29.
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