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氮气化学与肺部生理学。

Nitrogen chemistry and lung physiology.

机构信息

Department of Pediatrics, Rainbow Babies and Children's Hospital and Case Western Reserve University, Cleveland, Ohio 44106; email:

出版信息

Annu Rev Physiol. 2015;77:431-52. doi: 10.1146/annurev-physiol-021113-170352.

Abstract

The versatile chemistry of nitrogen is important to pulmonary physiology. Indeed, almost all redox forms of nitrogen are relevant to pulmonary physiology and to pathophysiology. Here we review the relevance to pulmonary biology of (a) elemental nitrogen; (b) reduced forms of nitrogen such as amines, ammonia, and hydroxylamine; and (c) oxidized forms of nitrogen such as the nitroxyl anion, the nitric oxide free radical, and S-nitrosothiols. Our focus is on oxidized nitrogen in the form of S-nitrosothiol bond-containing species, which are now appreciated to be important to every type of cell-signaling process in the lung. We also review potential clinical applications of nitrogen oxide biochemistry. These principles are being translated into clinical practice as diagnostic techniques and therapies for a range of pulmonary diseases including asthma, cystic fibrosis, adult respiratory distress syndrome, primary ciliary dyskinesia, and pulmonary hypertension.

摘要

氮的多功能化学性质对肺生理学很重要。事实上,几乎所有氮的氧化还原形式都与肺生理学和病理生理学有关。在这里,我们回顾了(a)元素氮;(b)还原形式的氮,如胺、氨和羟胺;以及(c)氧化形式的氮,如亚硝酰阴离子、一氧化氮自由基和 S-亚硝基硫醇,与肺生物学的相关性。我们的重点是氮的氧化形式,以 S-亚硝基硫醇键合形式存在的物质,现在被认为对肺中的每一种细胞信号转导过程都很重要。我们还回顾了一氧化氮生物化学的潜在临床应用。这些原则正在转化为临床实践,作为一系列肺部疾病的诊断技术和治疗方法,包括哮喘、囊性纤维化、成人呼吸窘迫综合征、原发性纤毛运动障碍和肺动脉高压。

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