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首页> 外文期刊>Angewandte Chemie >Interfacial Nanoprecipitation toward Stable and Responsive Microbubbles and Their Use as a Resuscitative Fluid
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Interfacial Nanoprecipitation toward Stable and Responsive Microbubbles and Their Use as a Resuscitative Fluid

机译:稳定响应微泡的界面纳米沉淀及其作为复苏液的用途

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摘要

A new approach has been developed to prepare stable microbubbles (MBs) by interfacial nanoprecipitation of bioabsorbable polymers at air/liquid interfaces. This facile method offers robust control over the morphology and chemophysical properties of MBs by simple chemical modifications. This approach is amenable to large-scale manufacturing, and is useful to develop functional MBs for advanced biomedical applications. To demonstrate this, a MB-based intravenous oxygen carrier was created that undergoes pH-triggered self-elimination. Intravenous injection of previous MBs increased the risk of pulmonary vascular obstruction. However, we show, for the first time, that our current design is superior, as they 1)yielded no evidence of acute risks in rodents, and 2)improved the survival in a disease model of asphyxial cardiac arrest (from 0 to 100%), a condition that affects more than 100000 in-hospital patients, and carries a mortality of about 90%.
机译:已经开发了一种新方法来制备稳定的微泡(MBS)通过在空气/液体界面处的生物可吸收聚合物的界面纳米沉积物制备。 该容易方法通过简单的化学修饰提供了对MBS的形态和化学物理性质的鲁棒控制。 这种方法可用于大规模制造,可用于开发用于高级生物医学应用的功能性MBS。 为了证明这一点,产生了基于MB的静脉内氧载体,其经历pH-触发的自消除。 先前的MBS静脉注射增加了肺血管阻塞的风险。 但是,我们首次展示我们目前的设计优越,因为它们1)没有啮齿动物中急性风险的证据,2)在窒息心脏骤停的疾病模型中提高了疾病模型的存活率(从0到100%提高 ),一种影响超过100000名内医院患者的病症,并携带约90%的死亡率。

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