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Recovery of Drug Delivery Nanoparticles from Human Plasma using an Electrokinetic Platform Technology

机译:使用电动平台技术从人血浆中回收药物输送纳米颗粒

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摘要

The effect of complex biological fluids on the surface and structure of nanoparticles is a rapidly expanding field of study. One of the challenges holding back this research is the difficulty of recovering therapeutic nanoparticles from biological samples due to their small size, low density, and stealth surface coatings. Here we present the first demonstration of the recovery and analysis of drug delivery nanoparticles from undiluted human plasma samples through the use of a new electrokinetic platform technology. The particles are recovered from plasma through a dielectrophoresis separation force that is created by innate differences in the dielectric properties between the unaltered nanoparticles and the surrounding plasma. We show this can be applied to a wide range of drug delivery nanoparticles of different morphologies and materials, including low density nano-liposomes. These recovered particles can then be analyzed using different methods including scanning electron microscopy to monitor surface and structural changes that result from plasma exposure. We believe that this new recovery technique is broadly applicable to the recovery of nanoparticles from high conductance fluids in a wide range of applications.
机译:复杂生物流体对纳米颗粒的表面和结构的影响是一个快速扩展的研究领域。阻碍这项研究的挑战之一是由于生物样品的小尺寸,低密度和隐形表面涂层,难以从生物样品中回收治疗性纳米颗粒。在这里,我们展示了使用新的电动平台技术从未稀释的人类血浆样品中回收和分析药物递送纳米颗粒的首次演示。通过介电电泳分离力从等离子体中回收颗粒,该分离力是由未改变的纳米颗粒和周围等离子体之间的固有介电差异产生的。我们表明这可以应用于各种不同形态和材料的药物递送纳米颗粒,包括低密度纳米脂质体。然后可以使用包括扫描电子显微镜在内的不同方法对这些回收的颗粒进行分析,以监测等离子体暴露导致的表面和结构变化。我们相信,这种新的回收技术广泛适用于从高电导率流体中回收纳米颗粒的广泛应用。

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