Nitric oxide donor restores lung growth factor and receptor expression in hyperoxia-exposed rat pups

被引:22
|
作者
Lopez, Emmanuel
Boucherat, Olivier
Franco-Montoya, Marie-Laure
Bourbon, Jacques R.
Delacourt, Christophe
Jarreau, Pierre-Henri
机构
[1] Univ Paris 12, INSERM U651, Fac Med, F-94010 Creteil, France
[2] Univ Paris 05, Paris, France
[3] Fac Med, Paris, France
[4] AP HP, Paris, France
[5] Hop Cochin, F-75674 Paris, France
[6] Serv Med Neonatale Port Royal, Paris, France
关键词
alveolarization; angiogenesis; bronchopulmonary dysplasia; lung development; vascular endothelial growth factor;
D O I
10.1165/rcmb.2005-0254OC
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Exposure of newborn rats to hyperoxia impairs alveolarization. Nitric oxide (NO) may prevent this evolution. Angiogenesis and factors involved in this process, but also other growth factors (GFs) involved in alveolar development, are likely potential therapeutic targets for NO. We studied the effects of the NO donor, [Z]-1-[N-(2-aminoethyl)-N-(2-ammonioethyl)aminio]diazen-1-ium-1, 2-diolate, also termed DETANONOate (D-NO), on hyperoxia-induced changes in key regulatory factors of alveolar development in neonatal rats, and its possible preventive effect on the physiologic consequences of hyperoxia. Newborn rat pups were randomized at birth to hyperoxia I(> 95% 02) or room air exposure for 6 or 10 cl, while receiving D-NO or its diluent. On Day 6, several GFs and their receptors were studied at pre- and/or post-translational levels. Elastin transcript determination on Day 6, and elastin deposition in tissue and morphometric analysis of the lungs on Day 10, were also performed. Hyperoxia decreased the expression of vascular endothelial growth factor (VEGF) receptor (VEGFR) 2, fibroblast growth factor (FGF)-18, and FCF receptors (FGFRs) FGFR3 and FGFR4, increased mortality, and impaired alveolarization and capillary growth. D-NO treatment of hyperoxia-exposed pups restored the expression level of FGF18 and FGFR4, induced an increase of both VEGF mRNA and protein, enhanced elastin expression, and partially restored elastin deposition in alveolar walls. Although, under the present conditions, D-NO failed to prevent the physiologic consequences of hyperoxia in terms of survival and lung alveolarization, our findings demonstrate molecular effects of NO on GFs involved in alveolar development that may have contributed to the protective effects previously reported for NO.
引用
收藏
页码:738 / 745
页数:8
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