The Application of Field-Flow Fractionation to the Analysis of Nanomedicines

Joshua S. Walker, Syampriya Bindhu Syammohan, Z. Rattray
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Abstract

Thecombination of field-flow fractionation with powerful leading-edge detectors canbe applied to the measurement of nanomaterial physicochemical properties, and thecreation of harmonized robust measurement protocols. The Multiscale MetrologySuite (MMS) at the University of Strathclyde is a unique internationallyleading facility combining multiple leading-edge field flow fractionation modalities(electric, asymmetric and centrifugal) with in-line Raman, inductively-coupledplasma (ICP) mass spectrometry and multimodal detector capability. Using exemplarcase studies, we demonstrate the application of various FFF hyphenations forthe analysis of a diverse materials portfolio. One of the goals for the MMS isto raise the standards of traditional academic analytical support underpinningpioneering academic engineering, physical and life sciences research exploringnovel materials as diagnostics and therapeutics.
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场流分馏在纳米药物分析中的应用
结合场流分馏与强大的前沿探测器可以应用于纳米材料的物理化学性质的测量,并创建协调稳健的测量方案。斯特拉斯克莱德大学的多尺度计量套件(MMS)是一个独特的国际领先的设施,结合了多种领先的场流分选模式(电,不对称和离心),在线拉曼,电感耦合等离子体(ICP)质谱和多模态探测器能力。使用示例案例研究,我们展示了各种FFF连字符在不同材料组合分析中的应用。MMS的目标之一是提高传统学术分析支持的标准,支持开创性的学术工程,物理和生命科学研究,探索作为诊断和治疗的新材料。
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