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孔径对温敏性聚合物接枝珠填充柱中分析物洗脱行为的影响。

Effect of pore diameter on the elution behavior of analytes from thermoresponsive polymer grafted beads packed columns.

机构信息

Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato, Tokyo, 105-8512, Japan.

出版信息

Sci Rep. 2021 May 11;11(1):9976. doi: 10.1038/s41598-021-89165-9.

Abstract

Temperature-responsive chromatography using thermoresponsive polymers is innovative and can control analyte retention via column temperature. Analyte elution behavior in this type of chromatography depends on the modified thermoresponsive polymer and the structure of the base materials. In the present study, we examine the effect of the pore diameter of silica beads on analyte elution behavior in temperature-responsive chromatography. Poly(N-isopropylacrylamide-co-n-butyl methacrylate) hydrogel was applied to beads of various pore sizes: 7, 12, and 30 nm. Almost the same amount of copolymer hydrogel was applied to all beads, indicating that the efficiency of copolymer modification was independent of pore size. Analyte retention on prepared beads in a packed column was observed using steroids, benzodiazepines, and barbiturates as analytes. Analyte retention times increased with temperature on packed columns of 12- and 30-nm beads, whereas the column packed with 7-nm beads exhibited decreased retention times with increasing temperature. The difference in analyte elution behavior among the various pore sizes was attributed to analyte diffusion into the bead pores. These results demonstrate that bead pore diameter determines temperature-dependent elution behavior.

摘要

使用温敏聚合物的温度响应色谱是一种创新技术,可以通过柱温来控制分析物的保留。这种类型的色谱中分析物的洗脱行为取决于改性温敏聚合物和基质材料的结构。在本研究中,我们考察了硅胶珠孔径对温度响应色谱中分析物洗脱行为的影响。将聚(N-异丙基丙烯酰胺-co-正丁基甲基丙烯酸酯)水凝胶应用于不同孔径的珠子:7、12 和 30nm。几乎等量的共聚物水凝胶被应用于所有珠子,这表明共聚物修饰的效率与孔径无关。使用类固醇、苯并二氮䓬类和巴比妥类作为分析物,在填充柱上观察到制备的珠子对分析物的保留。在填充有 12nm 和 30nm 珠子的填充柱上,分析物的保留时间随温度升高而增加,而填充有 7nm 珠子的柱子随着温度升高保留时间减少。不同孔径之间分析物洗脱行为的差异归因于分析物在珠孔内的扩散。这些结果表明,珠孔直径决定了温度依赖性的洗脱行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/709e/8113370/ff2cc6404d77/41598_2021_89165_Fig1_HTML.jpg

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