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一氧化氮对胎儿和新生儿肺发育和功能的调节。

Nitric oxide regulation of fetal and newborn lung development and function.

机构信息

Cardiovascular Research Center of the General Medical Services and the Departments of Anesthesia, Critical Care and Pain Medicine, Pediatrics, and Medicine, Massachusetts General Hospital - East, 149 13th St, Boston, MA, USA; Harvard Medical School, Harvard University, Cambridge, MA, USA.

出版信息

Nitric Oxide. 2024 Jun 1;147:13-25. doi: 10.1016/j.niox.2024.04.005. Epub 2024 Apr 7.

Abstract

In the developing lung, nitric oxide (NO) and cyclic guanosine monophosphate (cGMP) signaling are essential in regulating lung formation and vascular tone. Animal studies have linked many anatomical and pathophysiological features of newborn lung disease to abnormalities in the NO/cGMP signaling system. They have demonstrated that driving this system with agonists and antagonists alleviates many of them. This research has spurred the rapid clinical development, testing, and application of several NO/cGMP-targeting therapies with the hope of treating and potentially preventing significant pediatric lung diseases. However, there are instances when the therapeutic effectiveness of these agents is limited. Studies indicate that injury-induced disruption of several critical components within the signaling system may hinder the promise of some of these therapies. Recent research has identified basic mechanisms that suppress NO/cGMP signaling in the injured newborn lung. They have also pinpointed biomarkers that offer insight into the activation of these pathogenic mechanisms and their influence on the NO/cGMP signaling system's integrity in vivo. Together, these will guide the development of new therapies to protect NO/cGMP signaling and safeguard newborn lung development and function. This review summarizes the important role of the NO/cGMP signaling system in regulating pulmonary development and function and our evolving understanding of how it is disrupted by newborn lung injury.

摘要

在肺部发育过程中,一氧化氮(NO)和环鸟苷酸(cGMP)信号通路对于调节肺形成和血管张力至关重要。动物研究将许多新生儿肺部疾病的解剖学和病理生理学特征与 NO/cGMP 信号系统的异常联系起来。它们表明,通过激动剂和拮抗剂来驱动该系统可以缓解其中的许多问题。这项研究促使人们快速开展、测试和应用几种针对 NO/cGMP 的治疗方法,以期治疗和预防一些重要的儿科肺部疾病。然而,这些药物的治疗效果有时会受到限制。研究表明,信号系统中几个关键成分的损伤诱导破坏可能会阻碍其中一些疗法的应用前景。最近的研究已经确定了抑制损伤新生肺中 NO/cGMP 信号的基本机制,还确定了一些生物标志物,这些标志物可以深入了解这些致病机制的激活及其对体内 NO/cGMP 信号系统完整性的影响。这些将共同指导新疗法的开发,以保护 NO/cGMP 信号并保护新生儿肺的发育和功能。本文综述了 NO/cGMP 信号系统在调节肺发育和功能中的重要作用,以及我们对其如何被新生儿肺损伤破坏的不断深入的理解。

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