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Asymmetrical Flow Field-Flow Fractionation and Multiangle Light Scattering for Analysis of Gelatin Nanoparticle Drug Carrier Systems

机译:明胶纳米颗粒药物载体系统的非对称流场-流分离和多角度光散射

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摘要

The physicochemical properties of nanosized colloidal drug carrier systems are of great influence on drug efficacy. Consequently, a broad spectrum of analytical techniques is applied for comprehensive drug carrier characterization. It is the primary objective of this paper to present asymmetrical flow field-flow fractionation (AF4), coupled online with multiangle light scattering detection, for the characterization of gelatin nanoparticles. Size and size distribution of drug-loaded and unloaded nanoparticles were determined, and data were correlated with results of state-of-the-art methods, such as scanning electron microscopy and photon correlation spectroscopy. Moreover, the AF4 fractionation of gelatin nanoparticulate carriers from a protein model drug is demonstrated for the first time, proposing a feasible way to assess the amount of loaded drug in situ without sample preparation. This hypothesis was set into practice by monitoring the drug loading of nanoparticles with oligonucleotide payloads. In this realm, various fractions of gelatin bulk material were analyzed via AF4 and size-exclusion high-pressure liquid chromatography. Mass distributions and high-molecular-weight fraction ratios of the gelatin samples varied, depending on the separation method applied. In general, the AF4 method demonstrated the ability to comprehensively characterize polymeric gelatin bulk material as well as drug-loaded and unloaded nanoparticles in terms of size, size distribution, molecular weight, and loading efficiency.
机译:纳米胶体药物载体系统的物理化学性质对药物功效有很大的影响。因此,广泛的分析技术被用于全面的药物载体表征。本文的主要目的是提出不对称流场流分级分离(AF4),在线结合多角度光散射检测,以表征明胶纳米颗粒。确定了载药和载药纳米粒子的大小和尺寸分布,并将数据与最新方法的结果相关,例如扫描电子显微镜和光子相关光谱法。此外,首次证明了来自蛋白质模型药物的明胶纳米颗粒载体的AF4分馏,提出了一种无需样品制备就可原位评估载药量的可行方法。通过监视具有寡核苷酸有效负载的纳米颗粒的药物负载,将这一假设付诸实践。在此领域中,通过AF4和尺寸排阻高压液相色谱分析了明胶散装物料的各个部分。明胶样品的质量分布和高分子量比例有所不同,这取决于所应用的分离方法。总的来说,AF4方法证明了能够在尺寸,尺寸分布,分子量和加载效率方面全面表征聚合物明胶块状材料以及药物加载和卸载的纳米颗粒的能力。

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