Glucocorticoid metabolism in the human fetal lung: implications for lung development and the pulmonary surfactant system.

Biology of the neonate Pub Date : 2006-01-01 Epub Date: 2005-09-29 DOI:10.1159/000088653
Mark R Garbrecht, Jonathan M Klein, Thomas J Schmidt, Jeanne M Snyder
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引用次数: 63

Abstract

It has been nearly 35 years since Liggins and Howie first reported the benefits of antenatal glucocorticoid (GC) treatment to promote the maturation of the human fetal lung, and nearly that long since Pasqualini and colleagues demonstrated that the human fetal lung actively metabolizes GCs. Since that time, our understanding of the effects of GCs on fetal lung maturation and pulmonary surfactant production has increased dramatically. Similarly, characterization of the enzymes involved in GC metabolism has greatly expanded our understanding of GC signaling in target tissues. In man, the biologically active GC (cortisol) and the biologically inactive GC (cortisone) are interconverted by the tissue-specific expression of the type 1 and type 2 11beta-hydroxysteroid dehydrogenase enzymes (HSD1 and HSD2). Much of the research on GC metabolism in peripheral target tissues has focused on the role of HSD1 in amplifying the effects of GCs in liver and adipose tissue or on the role of HSD2 in blocking the effects of GCs in the kidney and placenta. In contrast, the role of GC metabolism in modulating the effects of GCs on fetal lung maturation and the pulmonary surfactant system in humans is less understood. The goal of this review article is to present a brief overview of the role of GCs in human fetal lung maturation and pulmonary surfactant production, and to familiarize the reader with the biochemistry of the metabolism of natural and synthetic GCs by the HSD enzymes. In addition, we will review data concerning the expression and activity of the HSD enzymes in the human fetal lung and contrast this to what is known about the HSD enzymes in the fetal rodent lung. Although rodents, rabbits, sheep, and several primates have been invaluable model systems for the study of fetal lung development, we have chosen to largely focus this review on human lung, since there are significant differences in GC metabolism between humans and other species.

人胎儿肺糖皮质激素代谢:对肺发育和肺表面活性物质系统的影响。
近35年前,Liggins和Howie首次报道了产前糖皮质激素(GC)治疗促进人类胎儿肺成熟的益处,近35年前,Pasqualini和同事证实了人类胎儿肺积极代谢GC。从那时起,我们对gc对胎儿肺成熟和肺表面活性物质产生的影响的了解急剧增加。同样,对参与GC代谢的酶的表征也极大地扩展了我们对靶组织中GC信号传导的理解。在人类中,生物活性GC(皮质醇)和生物无活性GC(可的松)通过1型和2型11β -羟基类固醇脱氢酶(HSD1和HSD2)的组织特异性表达相互转化。关于GC在外周靶组织代谢的研究大多集中在HSD1在放大GC在肝脏和脂肪组织中的作用,或HSD2在阻断GC在肾脏和胎盘中的作用。相比之下,GC代谢在调节GC对胎儿肺成熟和人肺表面活性物质系统的影响中的作用尚不清楚。本文的目的是简要介绍gc在人胎儿肺成熟和肺表面活性物质产生中的作用,并使读者熟悉HSD酶代谢天然和合成gc的生物化学过程。此外,我们将回顾有关人类胎儿肺中HSD酶的表达和活性的数据,并将其与已知的啮齿动物胎儿肺中的HSD酶进行比较。虽然啮齿类动物、兔子、绵羊和一些灵长类动物已经成为研究胎儿肺发育的宝贵模型系统,但我们选择将重点放在人类肺上,因为人类和其他物种在GC代谢方面存在显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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