Hatchell D L, Wilson C A, Saloupis P
Duke University Department of Ophthalmology, Durham, North Carolina 27710.
Microvasc Res. 1994 May;47(3):344-54. doi: 10.1006/mvre.1994.1027.
Capillary plugging by neutrophils appears to be the mechanism responsible for the no reflow phenomenon following experimental ischemia in many tissues. The purpose of this study was to determine if neutrophils plug capillaries in experimental retinal ischemia. Unilateral retinal ischemia was produced in albino rats by focally exposing three adjacent retinal arterioles to argon blue-green laser light at 100 mW. Total occlusion was achieved in at least two vessels in each eye. The animals were euthanized at 3, 6, 8, or 24 hr following laser treatment. Nonlasered eyes of 17 animals served as controls. Trypsin digests were prepared of the retinal vasculature following formalin fixation. The total number of neutrophils present in the capillaries of each retina was counted using a light microscope and expressed as the number of cells per retina. Other eyes were fixed in glutaraldehyde:paraformaldehyde and the retinal tissue prepared for light and electron microscopy. The mean number of neutrophils in capillaries of retinas subjected to laser treatment was significantly higher than that in untreated control retinas at all time periods studied and increased with time from 3 to 6 hr. Intact as well as degranulated PMNs were present in the capillaries. The presence of large numbers of neutrophils plugging capillaries and their increased number with duration of ischemia supports the hypothesis that they contribute to capillary nonperfusion following acute retinal ischemia.
中性粒细胞堵塞毛细血管似乎是许多组织实验性缺血后无复流现象的原因。本研究的目的是确定中性粒细胞是否会在实验性视网膜缺血中堵塞毛细血管。通过将三只相邻的视网膜小动脉局部暴露于100毫瓦的氩蓝绿激光下,在白化大鼠中产生单侧视网膜缺血。每只眼睛至少有两条血管实现完全闭塞。在激光治疗后3、6、8或24小时对动物实施安乐死。17只动物未接受激光照射的眼睛作为对照。在福尔马林固定后,制备视网膜血管系统的胰蛋白酶消化物。使用光学显微镜对每个视网膜毛细血管中存在的中性粒细胞总数进行计数,并表示为每个视网膜的细胞数。其他眼睛用戊二醛:多聚甲醛固定,并制备用于光学和电子显微镜检查的视网膜组织。在所有研究时间段内,接受激光治疗的视网膜毛细血管中的中性粒细胞平均数量显著高于未治疗的对照视网膜,并且从3小时到6小时随时间增加。毛细血管中存在完整的以及脱颗粒的多形核白细胞。大量中性粒细胞堵塞毛细血管以及它们的数量随缺血持续时间增加,支持了它们在急性视网膜缺血后导致毛细血管无灌注的假说。