Hyperoxia and tidal volume: Independent and combined effects on neonatal pulmonary inflammation.

Biology of the neonate Pub Date : 2006-01-01 Epub Date: 2006-03-14 DOI:10.1159/000092005
Carey A Ehlert, William E Truog, Donald W Thibeault, Uttam Garg, Mike Norberg, Mo Rezaiekhaligh, Sherry Mabry, Ikechukwu I Ekekezie
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引用次数: 13

Abstract

Background: Hyperoxia and tidal volume mechanical ventilation are independent factors in the genesis of lung injury, but it remains unclear the extent to which each is responsible or contributes to this process in newborns.

Objectives: To study the independent and combined effects of hyperoxia and tidal volume mechanical ventilation on the induction of lung inflammation in a newborn piglet model of ventilator-induced lung injury.

Methods: Following exposure to either ambient air or F(I)O2 = 1.0 for a period of 3 days, newborn piglets were randomized to receive mechanical ventilation with either high tidal volume (20 ml/kg) or low tidal volume (6 ml/kg) for 4 h while controlling for pH.

Results: Monocyte chemoattractant protein-1 level in the lungs of animals randomized to hyperoxia with high tidal volume ventilation was significantly elevated, compared to all other groups (p < 0.05). Myeloperoxidase assayed in lung homogenate was found to be significantly higher in nonventilated animals exposed to hyperoxia (p < 0.01). Only in animals previously exposed to hyperoxia did the addition of high tidal volume ventilation further increase the level of myeloperoxidase present (p < 0.05). Pulmonary vascular resistance was significantly elevated after 4 h of mechanical ventilation compared to 1 h (p < 0.001).

Conclusions: We conclude that in neonatal piglets undergoing hyperoxic stress, superimposition of high tidal volume ventilation exacerbates the lung inflammation as assessed by lung monocyte chemoattractant protein-1 and level of myeloperoxidase.

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高氧和潮气量:对新生儿肺部炎症的独立和联合影响。
背景:高氧和潮气量机械通气是新生儿肺损伤发生的独立因素,但目前尚不清楚它们在多大程度上负责或促进了这一过程。目的:研究高氧与潮气量机械通气对新生仔猪肺损伤模型肺炎症诱导的独立及联合作用。方法:新生仔猪暴露于环境空气或F(I)O2 = 1.0环境3 d后,随机分为高潮气量(20 ml/kg)和低潮气量(6 ml/kg)机械通气4 h,同时控制ph。结果:高潮气量高氧通气组动物肺部单核细胞趋化蛋白-1水平显著高于其他各组(p < 0.05)。肺匀浆中髓过氧化物酶检测发现,暴露于高氧环境的非通气动物的肺匀浆中髓过氧化物酶含量显著升高(p < 0.01)。只有在先前暴露于高氧环境的动物中,增加高潮气量通气才能进一步增加髓过氧化物酶的水平(p < 0.05)。机械通气4 h后肺血管阻力明显高于1 h (p < 0.001)。结论:根据肺单核细胞趋化蛋白-1和髓过氧化物酶水平的评估,我们得出结论,在处于高氧应激的新生仔猪中,叠加高潮气量通气加剧了肺部炎症。
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