Sitar Simona, Vezočnik Valerija, Maček Peter, Kogej Ksenija, Pahovnik David, Žagar Ema
Department of Polymer Chemistry and Technology, National Institute of Chemistry , Hajdrihova 19, 1000, Ljubljana, Slovenia.
Biotechnical Faculty, Department of Biology, University of Ljubljana , Večna pot 111, 1000, Ljubljana, Slovenia.
Anal Chem. 2017 Nov 7;89(21):11744-11752. doi: 10.1021/acs.analchem.7b03251. Epub 2017 Oct 13.
An asymmetrical flow field-flow fractionation (AF4) technique coupled to a multiangle light scattering (MALS) detector with an embedded dynamic light scattering (DLS) module was introduced to study the size characteristics and shape of soft particles of various size and type: polystyrene nanosphere size standards, lipid droplets (LDs), and large unilamellar vesicles (LUVs). A range of flow velocities through the LS detector, at which accurate hydrodynamic size can be extracted from the DLS in flow mode, was studied since the particles subjected to a longitudinal flow exhibit not only the Brownian motion due to diffusion but also the translational movement. In addition, the impact of the longitudinal flow velocity on the shape of the artificial LUV of two different sizes and two different compositions was studied by MALS. For comparison, the conventional batch DLS and static light scattering (SLS) experiments without prior sample separation by size were performed. From a combination of batch and flow light scattering results, we concluded that the passage flow velocities at the detector used in this study, 0.2, 0.5, and 1 mL/min, have no significant impact on the shape of spherical vesicles; however, the flow DLS experiments give accurate hydrodynamic radius (R) only at the lowest investigated passage flow rate at the detector (0.2 mL/min). With increasing rate of passage flow at the DLS detector, the error in the accuracy of the R determination rapidly increases. The error in R depends solely on the detector flow rate and particle size but not on the type of the soft particle.
引入了一种与带有嵌入式动态光散射(DLS)模块的多角度光散射(MALS)检测器耦合的不对称流场-流分级(AF4)技术,以研究各种尺寸和类型的软颗粒的尺寸特征和形状:聚苯乙烯纳米球尺寸标准品、脂滴(LDs)和大单层囊泡(LUVs)。研究了通过LS检测器的一系列流速,在该流速下可以从流动模式下的DLS中提取准确的流体动力学尺寸,因为受到纵向流动的颗粒不仅由于扩散而表现出布朗运动,还表现出平移运动。此外,通过MALS研究了纵向流速对两种不同尺寸和两种不同组成的人工LUV形状的影响。为了进行比较,进行了传统的批量DLS和静态光散射(SLS)实验,这些实验没有事先按尺寸对样品进行分离。结合批量和流动光散射结果,我们得出结论,本研究中检测器使用的通过流速0.2、0.5和1 mL/min对球形囊泡的形状没有显著影响;然而,流动DLS实验仅在检测器处研究的最低通过流速(0.2 mL/min)下给出准确的流体动力学半径(R)。随着DLS检测器处通过流速的增加,R测定精度的误差迅速增加。R的误差仅取决于检测器流速和颗粒尺寸,而不取决于软颗粒的类型。