Independent and combined effects of prolonged inhaled nitric oxide and oxygen on lung inflammation in newborn piglets

被引:26
作者
Ekekezie, II [1 ]
Thibeault, DW [1 ]
Zwick, DL [1 ]
Rezaiekhaligh, MH [1 ]
Mabry, SM [1 ]
Morgan, RE [1 ]
Norberg, M [1 ]
Truog, WE [1 ]
机构
[1] Univ Missouri, Childrens Mercy Hosp, Sch Med, Dept Neonatol, Kansas City, MO 64108 USA
来源
BIOLOGY OF THE NEONATE | 2000年 / 77卷 / 01期
关键词
apoptosis; neutrophil CD18; intracellular oxidants; nitric oxide; piglets;
D O I
10.1159/000014193
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
Clinical use of nitric oxide (NO) is usually in conjunction with high oxygen concentrations, the effects of which may include lung neutrophil accumulation, apoptosis and upregulation of antioxidant enzyme activity. To define the effects of NO on neutrophils from young piglets and its relationship to lung neutrophil dynamics during hyperoxia we exposed thirty piglets to room air (RA), RA+NO (50 ppm NO), O-2 (FiO(2) greater than or equal to 0.96) or O-2+NO for 5 days. Ten additional animals breathed RA+NO or O-2+NO, then recovered in RA for 3 days before sacrifice. Neutrophil CD18 and intracellular oxidant production were measured by flow cytometry. Lung apoptosis were assessed by TUNEL assay. Lung myeloperoxidase, SOD and catalase were measured biochemically. When compared to RA group, there was significant reduction in neutrophil CD18 and intracellular oxidant production in the RA+NO group, but lung MPO was unchanged. The O-2 and O-2+NO groups did not differ in CD18 expression or in intracellular oxidant production, but had significant increase in lung myeloperoxidase compared to the RA group. Apoptosis increased significantly only in the O-2+NO group. The O-2 group showed significantly increased lung SOD and catalase activity compared to the RA group, whereas the RA+NO and O-2+NO groups did not. We conclude that inhaled NO at 50 ppm decreases neutrophil CD18 expression as well as intracellular oxidant production. However, this effect does not impact lung neutrophil accumulation during concurrent hyperoxia. The combination of NO and O-2 exposure produces an increase in lung apoptosis. Finally, NO may prevent upregulation of SOD and catalase activity during hyperoxia, potentially increasing injury. Copyright (C) 2000 S. Karger AG, Basel.
引用
收藏
页码:37 / 44
页数:8
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