首页> 美国卫生研究院文献>The Journal of Neuroscience >Increased 20-HETE Synthesis Explains Reduced Cerebral Blood Flow But Not Impaired Neurovascular Coupling after Cortical Spreading Depression in Rat Cerebral Cortex
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Increased 20-HETE Synthesis Explains Reduced Cerebral Blood Flow But Not Impaired Neurovascular Coupling after Cortical Spreading Depression in Rat Cerebral Cortex

机译:增加20-HETE合成说明减少大鼠脑皮质皮质扩散抑制后脑血流量但不损害神经血管耦合。

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摘要

Cortical spreading depression (CSD) is associated with release of arachidonic acid, impaired neurovascular coupling, and reduced cerebral blood flow (CBF), caused by cortical vasoconstriction. We tested the hypothesis that the released arachidonic acid is metabolized by the cytochrome P450 enzyme to produce the vasoconstrictor 20-hydroxyeicosatetraenoic acid (20-HETE), and that this mechanism explains cortical vasoconstriction and vascular dysfunction after CSD. CSD was induced in the frontal cortex of rats and the cortical electrical activity and local field potentials recorded by glass microelectrodes, CBF by laser Doppler flowmetry, and tissue oxygen tension (tpO2) using polarographic microelectrodes. 20-HETE synthesis was measured in parallel experiments in cortical brain slices exposed to CSD. We used the specific inhibitor HET0016 (N-hydroxy-N′-(4-n-butyl-2-methylphenyl)formamidine) to block 20-HETE synthesis. CSD increased 20-HETE synthesis in brain slices for 120 min, and the time course of the increase in 20-HETE paralleled the reduction in CBF after CSD in vivo. HET0016 blocked the CSD-induced increase in 20-HETE synthesis and ameliorated the persistent reduction in CBF, but not the impaired neurovascular coupling after CSD. These findings suggest that CSD-induced increments in 20-HETE cause the reduction in CBF after CSD and that the attenuation of stimulation-induced CBF responses after CSD has a different mechanism. We suggest that blockade of 20-HETE synthesis may be clinically relevant to ameliorate reduced CBF in patients with migraine and acute brain cortex injuries.
机译:皮质扩张抑制(CSD)与花生四烯酸的释放,神经血管耦合受损以及皮质血管收缩引起的脑血流量(CBF)降低有关。我们测试了以下假设:释放的花生四烯酸被细胞色素P450酶代谢产生血管收缩剂20-羟基二十碳四烯酸(20-HETE),并且该机制解释了CSD后皮质血管收缩和血管功能障碍。在大鼠的额叶皮层中诱导了CSD,玻璃微电极记录了皮质电活动和局部场电位,激光多普勒血流计记录了CBF,极谱微电极记录了组织氧张力(tpO2)。在平行实验中,在暴露于CSD的皮质大脑切片中测量了20-HETE的合成。我们使用了特异性抑制剂HET0016(N-羟基-N'-(4-正丁基-2-甲基苯基)甲idine)来阻断20-HETE的合成。 CSD在120分钟内增加了脑切片中20-HETE的合成,而20-HETE的增加的时间过程与体内CSD后CBF的减少相平行。 HET0016阻止了CSD诱导的20-HETE合成增加,并改善了CBF的持续降低,但并未缓解CSD后神经血管耦合受损。这些发现表明,CSD引起的20-HETE增量导致CSD后CBF降低,而CSD后刺激引起的CBF反应减弱具有不同的机制。我们建议,在偏头痛和急性脑皮质损伤患者中,阻断20-HETE的合成可能与改善CBF降低有关。

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