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Size and molecular weight determination of polysaccharides by means of nano electrospray gas‐phase electrophoretic mobility molecular analysis (nES GEMMA)

机译:纳米电喷雾气相电泳迁移率分子分析(nES GEMMA)测定多糖的大小和分子量

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摘要

Size, size distribution and molecular weight (MW) determination of nanoparticles and that are for example large polymers, are of great interest and pose an analytical challenge. In this context, nano electrospray gas‐phase electrophoretic mobility molecular analysis (nES GEMMA) is a valuable tool with growing impact. Separation of single‐charged analytes according to their electrophoretic mobility diameter (EMD) starting from single‐digit EMDs up to several hundred nm diameters is possible. In case of spherical analytes, the EMD corresponds to the dry nanoparticle size. Additionally, the instrument is capable of number‐based, single‐particle detection following the recommendation of the European Commission for nanoparticle characterization (2011/696/EU). In case an EMD/MW correlation for a particular compound class (based on availability of well‐defined standards) exists, a nanoparticle's MW can be determined from its EMD. In the present study, we focused on nES GEMMA of linear and branched, water‐soluble polysaccharides forming nanoparticles and were able to obtain spectra for both analyte classes regarding single‐charged species. Based on EMDs for corresponding analytes, an excellent EMD/MW correlation could be obtained in case of the branched natural polymer (dextran). This enables the determination of dextran MWs from nES GEMMA spectra despite high analyte polydispersity and in a size/MW range, where classical mass spectrometry is limited. EMD/MW correlations based on linear (pullulans, oat‐ß‐glucans) polymers were significantly different, possibly indicating challenges in the exact MW determination of these compounds by, for example, chromatographic and light scattering means. Despite these observations, nES GEMMA of linear, monosaccharide‐based polymers enabled the determination of size and size‐distribution of such dry bionanoparticles.
机译:纳米颗粒(例如大型聚合物)的尺寸,尺寸分布和分子量(MW)测定引起人们极大的兴趣,并提出了分析挑战。在这种情况下,纳米电喷雾气相电泳迁移率分子分析(nES GEMMA)是一种越来越有价值的有价值的工具。可以根据电泳迁移率直径(EMD)分离单个电荷的分析物,从单个EMD到最大数百nm的直径。对于球形分析物,EMD对应于干燥的纳米颗粒尺寸。此外,该仪器能够按照欧洲委员会关于纳米粒子表征的建议(2011/696 / EU)进行基于数量的单粒子检测。如果存在特定化合物类别的EMD / MW相关性(基于明确定义的标准的可用性),则可以从其EMD中确定纳米粒子的MW。在本研究中,我们专注于线性和支链水溶性多糖形成纳米颗粒的nES GEMMA,并能够获得有关单电荷物种的两种分析物类别的光谱。基于相应分析物的EMD,如果使用支链天然聚合物(dextran),则可以获得出色的EMD / MW相关性。尽管分析物的多分散性很高,并且在尺寸/ MW范围内,这仍然可以从nES GEMMA光谱中确定葡聚糖MWs,而传统的质谱分析方法受到限制。基于线性(普鲁兰酶,燕麦-β-葡聚糖)聚合物的EMD / MW相关性显着不同,这可能表明通过色谱和光散射手段准确测定这些化合物的MW面临挑战。尽管有这些观察结果,线性,基于单糖的聚合物的nES GEMMA能够确定此类干燥的生物纳米粒子的尺寸和尺寸分布。

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