Inhaled NO reaches distal vasculatures to inhibit endothelium- but not leukocyte-dependent cell adhesion

被引:25
作者
Fox-Robichaud, A [1 ]
Payne, D [1 ]
Kubes, P [1 ]
机构
[1] Univ Calgary, Dept Physiol & Biophys, Immunol Res Grp, Calgary, AB T2N 4N1, Canada
关键词
nitric oxide; P-selectin; platelet-activating factor; inflammation; oxidative stress; histamine; chemoattractants; leukotriene B-4;
D O I
10.1152/ajplung.1999.277.6.L1224
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Nitric oxide (NO), in addition to being a potent vasodilator, also prevents leukocyte adhesion in the microvasculature. Based on the antiadhesive properties of NO and work suggesting that NO is transported by proteins in the circulation, me tested the possibility that inhaled NO could impart antiadhesive effects in peripheral microvessels. We also determined the underlying mechanisms of actions. Three well-established models that induce local microvascular changes (either endothelium or leukocyte) mere used. Hydrogen peroxide (H2O2; 100 mu M) was superfused onto the cat mesentery to induce an endothelium-derived, P-selectin- and platelet-activating factor-dependent, oxidant-dependent leukocyte recruitment. In a second series of experiments, the cat mesentery was superfused with histamine (100 mu M) to induce rapid endothelium-derived, P-selectin- and platelet-activating factor-dependent, oxidant-independent leukocyte recruitment. Finally, in a third series of experiments to target the leukocyte (but not the endothelium) directly in the periphery, the chemotactic molecule leukotriene B-4 (20 nM) was superfused onto the cat mesentery. The above experiments were performed with and without cats breathing NO (80 parts/ million). Intravital microscopy was used to visualize the mesenteric microcirculation. Inhaled NO reduced the increased leukocyte rolling and adhesion associated with H2O2 superfusion of the feline mesentery via a cGMP-dependent mechanism. In contrast, inhaled NO had no effect on the histamine-induced increase in leukocyte rolling flux but partially inhibited the subsequent adhesion. The leukocyte chemotactic mediator leukotriene Bq induced a significant increase in leukocyte adhesion, but NO inhalation did not impair this chemotactically induced leukocyte recruitment. These data suggest that inhaled NO can reach the endothelium in the distal microvasculature and alter the response to an oxidative and a nonoxidative activator of endothelium but imparts no antiadhesive effect directly on circulating leukocytes.
引用
收藏
页码:L1224 / L1231
页数:8
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