Tsujikawa A, Ogura Y, Hiroshiba N, Miyamoto K, Kiryu J, Honda Y
Department of Ophthalmology and Visual Sciences, Kyoto University Graduate School of Medicine, Japan.
Invest Ophthalmol Vis Sci. 1998 Apr;39(5):793-800.
To evaluate quantitatively leukocyte dynamics in vivo in the rat retinal microcirculation during ischemia reperfusion injury with the use of acridine orange digital fluorography.
Retinal ischemia was induced in anesthetized pigmented rats by a temporary ligation of the optic nerve. After 60 minutes of ischemia, leukocyte behavior in the retinal microcirculation was evaluated, with acridine orange digital fluorography--consisting of a scanning laser ophthalmoscope and the fluorescent nuclear dye, acridine orange--during reperfusion at 1, 2, 4, 6, 12, 24, 48, 96, and 168 hours. The obtained images were recorded on videotape and analyzed with a computer-assisted image analysis system.
Rolling leukocytes along the major retinal veins were observed in treated rats during the reperfusion period; no rolling leukocytes were observed in the control rats. The number of rolling leukocytes gradually increased and peaked at 102 +/- 40 cells/minute 12 hours after reperfusion; few rolling leukocytes were observed at 96 hours. The velocity of rolling leukocytes at 12 hours (19.1 +/- 3.5 microns/second; P < 0.05) was significantly lower than that at the other three times. No rolling leukocytes were observed along the arterial walls throughout the experiments. The number of accumulated leukocytes increased as time elapsed, peaked at 931 +/- 187 cells/mm2 24 hours after reperfusion, and decreased thereafter.
Leukocyte dynamics in the retinal microcirculation can be quantitatively evaluated during ischemia reperfusion injury.
运用吖啶橙数字荧光造影术定量评估大鼠视网膜微循环在缺血再灌注损伤过程中的白细胞动态变化。
通过暂时结扎视神经在麻醉的有色大鼠中诱导视网膜缺血。缺血60分钟后,在再灌注1、2、4、6、12、24、48、96和168小时期间,使用由扫描激光检眼镜和荧光核染料吖啶橙组成的吖啶橙数字荧光造影术评估视网膜微循环中的白细胞行为。所获得的图像记录在录像带上,并使用计算机辅助图像分析系统进行分析。
在再灌注期间,在接受治疗的大鼠中观察到沿视网膜主要静脉滚动的白细胞;在对照大鼠中未观察到滚动的白细胞。滚动白细胞的数量逐渐增加,并在再灌注后12小时达到峰值,为102±40个细胞/分钟;在96小时时观察到的滚动白细胞很少。再灌注12小时时滚动白细胞的速度(19.1±3.5微米/秒;P<0.05)明显低于其他三个时间点。在整个实验过程中,沿动脉壁未观察到滚动白细胞。随着时间的推移,积聚白细胞的数量增加,在再灌注后24小时达到峰值,为931±187个细胞/平方毫米,此后减少。
在缺血再灌注损伤过程中,可以定量评估视网膜微循环中的白细胞动态变化。