Rosenblum W I, Nelson G H, Nishimura H
Department of Pathology (Neuropathology), Medical College of Virginia-Virginia Commonwealth University, Richmond 23298-0017.
Stroke. 1990 Nov;21(11):1618-20. doi: 10.1161/01.str.21.11.1618.
The diameters of pial arterioles of mice were monitored in vivo with an image-splitting technique and television microscopy. Concentrations of leukotriene C4 as low as 10(-7) M constricted the arterioles. The leukotriene C4-D4 receptor blocker ICI 198615 (10(-8) M) inhibited the response. Endothelial injury by helium-neon laser/Evans blue technique eliminated the constriction and unmasked a slight but consistent relaxation that was not inhibited by 10(-8) M ICI 198615. Since leukotrienes are produced by the brain and enter the cerebrospinal fluid in ischemia, head trauma, and subarachnoid hemorrhage, the possibility that leukotrienes C4 and D4 contribute to decreases in cerebral blood flow during these conditions should be considered. However, the present data makes such a possibility far less likely because the endothelium is frequently injured in these conditions, and therefore the ability of leukotrienes to constrict vessels would be severely curtailed.
采用图像分割技术和电视显微镜在体监测小鼠软脑膜小动脉的直径。低至10⁻⁷M的白三烯C4可使小动脉收缩。白三烯C4-D4受体阻滞剂ICI 198615(10⁻⁸M)可抑制该反应。氦氖激光/伊文思蓝技术造成的内皮损伤消除了收缩作用,并揭示出一种轻微但持续存在的舒张作用,该作用不受10⁻⁸M ICI 198615的抑制。由于白三烯由脑产生,并在缺血、头部创伤和蛛网膜下腔出血时进入脑脊液,因此应考虑白三烯C4和D4在这些情况下导致脑血流量减少的可能性。然而,目前的数据使这种可能性大大降低,因为在这些情况下内皮经常受到损伤,因此白三烯收缩血管的能力将受到严重限制。