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Characterizing a spheroidal nanocage drug delivery vesicle using multi-detector hydrodynamic chromatography

机译:使用多检测器流体动力学色谱法表征球形纳米笼药物递送囊泡

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摘要

The biological application of nanoparticles has resulted in an increased need for the development of robust, accurate, and precise methods for quality control analysis and characterization. Parameters such as particle size, particle shape, and their distributions affect end-use properties such as chemical reactivity, diffusivity, permeability, and transport. Introduced here is a hydrodynamic chromatography (HDC) method utilizing multi-angle static light scattering, quasi-elastic light scattering, differential viscometry, and differential refractometry detection for characterizing nanoscale vesicles. Quadruple-detector HDC was used to determine multiple sizing parameters and their statistical moments and distributions. Molar mass and molar mass averages were determined in a calibrant-independent fashion. Both the sizing parameters and the molar mass were measured across the HDC elution profile. The shape and structure of the nanoparticle were monitored as a function of HDC elution volume through the dimensionless ratio ρ ≡ R G,z /R H,z . The HDC results were comparable to those obtained by transmission electron microscopy, but more extensive characterization was possible by HDC, which provided distributions of both particle size and particle shape.
机译:纳米粒子的生物学应用导致对用于质量控制分析和表征的鲁棒,准确和精确方法的开发需求增加。诸如粒径,颗粒形状及其分布之类的参数会影响最终用途的性质,如化学反应性,扩散性,渗透性和传输性。这里介绍的是一种利用多角度静态光散射,准弹性光散射,差示粘度法和差示折光法检测来表征纳米囊泡的流体动力学色谱(HDC)方法。四重检测器HDC用于确定多个上浆参数及其统计矩和分布。摩尔质量和摩尔质量平均值以不依赖校准物的方式确定。整个HDC洗脱曲线均测量了上浆参数和摩尔质量。通过无量纲比ρ≡R G,z / R H,z 来监控纳米颗粒的形状和结构,作为HDC洗脱体积的函数。 HDC结果可与透射电子显微镜获得的结果相媲美,但是HDC可以进行更广泛的表征,从而提供粒径和颗粒形状的分布。

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