Center for Stroke Research Berlin, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Berlin, Germany.
Department of Experimental Neurology, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Berlin, Germany.
J Cereb Blood Flow Metab. 2020 Jun;40(6):1274-1289. doi: 10.1177/0271678X19861604. Epub 2019 Jul 7.
Focal brain ischemia is best studied in neocortex and striatum. Both show highly vulnerable neurons and high susceptibility to spreading depolarization (SD). Therefore, it has been hypothesized that these two variables generally correlate. However, this hypothesis is contradicted by findings in cerebellar cortex, which contains highly vulnerable neurons to ischemia, the Purkinje cells, but is said to be less susceptible to SD. Here, we found in the rat cerebellar cortex that elevated K induced a long-lasting depolarizing event superimposed with SDs. Cerebellar SDs resembled those in neocortex, but negative direct current (DC) shifts and regional blood flow responses were usually smaller. The K threshold for SD was higher in cerebellum than in previous studies in neocortex. We then topically applied endothelin-1 (ET-1) to the cerebellum, which is assumed to cause SD via vasoconstriction-induced focal ischemia. Although the blood flow decrease was similar to that in previous studies in neocortex, the ET-1 threshold for SD was higher. Quantitative cell counting found that the proportion of necrotic Purkinje cells was significantly higher in ET-1-treated rats than sham controls even if ET-1 had not caused SDs. Our results suggest that ischemic death of Purkinje cells does not require the occurrence of SD.
局灶性脑缺血在大脑皮层和纹状体中研究得最好。两者都显示出高度易损的神经元和对扩散性去极化(SD)的高易感性。因此,人们假设这两个变量通常是相关的。然而,这个假设与小脑皮层的发现相矛盾,小脑皮层含有对缺血高度易损的神经元,即浦肯野细胞,但据说对 SD 的敏感性较低。在这里,我们在大鼠小脑皮层中发现,升高的 K 诱导了一个与 SD 叠加的持久去极化事件。小脑 SD 类似于大脑皮层中的 SD,但负直流(DC)偏移和区域血流反应通常较小。小脑皮层的 SD K 阈值高于先前在大脑皮层中的研究。然后,我们将内皮素-1(ET-1)局部应用于小脑,据推测 ET-1 通过血管收缩引起的局灶性缺血引起 SD。尽管血流减少与先前在大脑皮层中的研究相似,但 ET-1 引起 SD 的阈值较高。定量细胞计数发现,即使 ET-1 没有引起 SD,在 ET-1 处理的大鼠中,坏死的浦肯野细胞的比例明显高于假手术对照。我们的结果表明,浦肯野细胞的缺血性死亡不需要发生 SD。