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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Highlight Commentary on 'Influence of lung oxidant and antioxidant status on alveolarization: Role of light-exposed total parenteral nutrition'
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Highlight Commentary on 'Influence of lung oxidant and antioxidant status on alveolarization: Role of light-exposed total parenteral nutrition'

机译:关于“肺部氧化剂和抗氧化剂状态对肺泡化的影响:光照全胃肠外营养的作用”的重点评论

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摘要

Bronchopulmonary dysplasia (BPD) is a frequent complication of premature newborns, particularly very low birth-weight babies (<1500 g). Undoubtedly multiple mechanisms contribute to the adverse outcomes associated with BPD but oxidative stress is one causative factor. In this issue of Free Radical Biology and Medicine, Lavoie et al. describe the increased peroxide generation when the multivitamin solution used for nutritional support, total parenteral nutrition (TPN), is exposed to ambient light. Because the premature newborn has limited antioxidant capacity, this increased oxidative burden from the TPN becomes increasingly significant. Infusion of this light-exposed solution in a newborn guinea pig decreased lung tissue vitamin C but not vitamin E. When the multivitamin and lipid solutions were mixed and then exposed to light, alveolarization of the developing lung was decreased. This study by Lavoie et al. highlights simple measures that can potentially decrease the oxidant burden delivered to this vulnerable population and improve alveolarization#
机译:支气管肺发育不良(BPD)是早产婴儿的常见并发症,特别是出生体重很轻的婴儿(<1500 g)。毫无疑问,多种机制导致了与BPD相关的不良后果,但是氧化应激是其中的一个致病因素。在本期《自由基生物学与医学》中,Lavoie等人。描述了当用于营养支持的多种维生素溶液(全胃肠外营养(TPN))暴露于环境光时,过氧化物的产生增加。由于早产儿的抗氧化能力有限,因此来自TPN的这种增加的氧化负担变得越来越重要。在新生豚鼠中输注这种曝光过的溶液会降低肺组织维生素C,但不会降低维生素E。当将多种维生素和脂质溶液混合然后暴露于光线下时,发育中的肺泡减少了。 Lavoie等人的这项研究。重点介绍了一些简单的措施,这些措施可以潜在地减少输送给该脆弱人群的氧化剂负担并改善肺泡化#

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