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Nitric oxide in paediatric respiratory disorders: novel interventions to address associated vascular phenomena?

机译:小儿呼吸系统疾病中的一氧化氮:解决相关血管现象的新颖干预措施?

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摘要

Nitric oxide (NO) has a significant role in modulating the respiratory system and is being exploited therapeutically. Neonatal respiratory failure can affect around 2% of all live births and is responsible for over one third of all neonatal mortality. Current treatment method with inhaled NO (iNO) has demonstrated great benefits to patients with persistent pulmonary hypertension, bronchopulmonary dysplasia and neonatal respiratory distress syndrome. However, it is not without its drawbacks, which include the need for patients to be attached to mechanical ventilators. Notably, there is also a lack of identification of subgroups amongst abovementioned patients, and homogeneity in powered studies associated with iNO, which is one of the limitations. There are significant developments in drug delivery methods and there is a need to look at alternative or supplementary methods of NO delivery that could reduce current concerns. The addition of NO-independent activators and stimulators, or drugs such as prostaglandins to work in synergy with NO donors might be beneficial. It is of interest to consider such delivery methods within the respiratory system, where controlled release of NO can be introduced whilst minimizing the production of harmful byproducts. This article reviews current therapeutic application of iNO and the state-of-the-art technology methods for sustained delivery of NO that may be adapted and developed to address respiratory disorders. We envisage this perspective would prompt active investigation of such systems for their potential clinical benefit.
机译:一氧化氮(NO)在调节呼吸系统中具有重要作用,目前正在治疗中。新生儿呼吸衰竭可影响所有活产婴儿的约2%,并占所有新生儿死亡率的三分之一以上。当前的吸入NO(iNO)治疗方法已证明对患有持续性肺动脉高压,支气管肺发育异常和新生儿呼吸窘迫综合征的患者具有巨大益处。但是,它并非没有缺点,包括需要将患者连接到机械呼吸机上。值得注意的是,在上述患者中也缺乏对亚组的鉴定,并且与iNO相关的有力研究中的同质性是局限性之一。药物输送方法有了重大发展,需要研究可以减少当前关注的NO输送的替代或补充方法。加入不依赖NO的激活剂和刺激剂,或与前列腺素供体协同作用的药物(例如前列腺素)可能是有益的。令人感兴趣的是考虑在呼吸系统内的这种递送方法,其中可以引入NO的受控释放,同时使有害副产物的产生最小化。本文回顾了iNO的当前治疗应用以及用于持续释放NO的最新技术方法,这些方法可以进行调整和发展以解决呼吸系统疾病。我们认为,这种观点将促使人们积极研究此类系统的潜在临床价值。

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