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Optimization of Magneto-thermally Controlled Release Kinetics by Tuning of Magnetoliposome Composition and Structure

机译:通过调节磁脂质体的组成和结构优化磁热控释动力学

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摘要

Stealth (PEGylated) liposomes have taken a central role in drug formulation and delivery combining efficient transport with low nonspecific interactions. Controlling rapid release at a certain location and time remains a challenge dependent on environmental factors. We demonstrate a highly efficient and scalable way to produce liposomes of any lipid composition containing homogeneously dispersed monodisperse superparamagnetic iron oxide nanoparticles in the membrane interior. We investigate the effect of lipid composition, particle concentration and magnetic field actuation on colloidal stability, magneto-thermally actuated release and passive release rates. We show that the rate and amount of encapsulated hydrophilic compound released by actuation using alternating magnetic fields can be precisely controlled from stealth liposomes with high membrane melting temperature. Extraordinarily low passive release and temperature sensitivity at body temperature makes this a promising encapsulation and external-trigger-on-demand release system. The introduced feature can be used as an add-on to existing stealth liposome drug delivery technology.
机译:隐身(聚乙二醇化)脂质体在药物配制和输送中发挥了核心作用,结合了有效的转运和低的非特异性相互作用。取决于环境因素,控制在特定位置和时间的快速释放仍然是一个挑战。我们展示了一种高效且可扩展的方法来生产任何脂质组成的脂质体,这些脂质组合物在膜内部包含均匀分散的单分散超顺磁性氧化铁纳米颗粒。我们研究脂质成分,颗粒浓度和磁场驱动对胶体稳定性,磁热驱动释放和被动释放速率的影响。我们表明,可以通过具有高膜熔融温度的隐形脂质体精确控制通过使用交变磁场驱动释放的包封亲水性化合物的速率和数量。极低的被动释放和在人体温度下的温度敏感性使其成为一种有前途的封装和按需外部触发释放系统。引入的功能可以用作现有隐形脂质体药物输送技术的附加组件。

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