首页> 美国卫生研究院文献>Chemical Science >Controllable NO release from Cu1.6S nanoparticle decomposition of S-nitrosoglutathiones following photothermal disintegration of polymersomes to elicit cerebral vasodilatory activity
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Controllable NO release from Cu1.6S nanoparticle decomposition of S-nitrosoglutathiones following photothermal disintegration of polymersomes to elicit cerebral vasodilatory activity

机译:聚合物小体的光热分解引起脑血管舒张活性后S-亚硝基谷胱甘肽的Cu1.6S纳米颗粒分解的可控NO释放

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摘要

Since the discovery of nitric oxide (NO) as a vasodilator, numerous NO therapies have been attempted to remedy disorders related to pathological vasoconstriction such as coronary artery disease. Despite the advances, clinical applications of NO therapies remain limited mainly because of the low stability of molecular NO donors (and NO molecules), and concerns about the increased oxidative stress and reduced arterial pressure associated with the systemic administration of NO. Here we design a photo-responsive polymersome with nitrosothiols and Cu1.6S nanoparticles in its core and shell, respectively, and demonstrate the photo-triggered release of NO and its vasodilatory activity on zebrafish. Unlike conventional approaches, our design enhances the stability of NO donors and prospectively enables spatiotemporal regulation of NO release, thus minimizing the harmful effects associated with conventional NO therapies. We anticipate that such a strategy will open up new clinical applications of NO and help reveal the complex biological effects of NO in vivo.
机译:自从发现一氧化氮(NO)作为血管扩张剂以来,已尝试了多种NO治疗方法来纠正与病理性血管收缩有关的疾病,例如冠状动脉疾病。尽管取得了进展,但NO疗法的临床应用仍然受到限制,这主要是由于分子NO供体(和NO分子)的稳定性低,以及与NO全身性给药相关的氧化应激增加和动脉压降低所引起的担忧。在这里,我们设计了一个光响应聚合物小体,其核和壳中分别含有亚硝基硫醇和Cu1.6S纳米粒子,并证明了光触发释放的NO及其在斑马鱼上的血管舒张活性。与常规方法不同,我们的设计增强了NO供体的稳定性,并可以实现NO释放的时空调节,从而最大程度地减少了与常规NO治疗相关的有害影响。我们预期这种策略将开辟NO的新临床应用,并有助于揭示NO在体内的复杂生物学效应。

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