利用自动水平凝胶装置在聚合物溶液中对亚细胞大小的颗粒进行电泳的可行性。

H T Chang, A Chrambach
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引用次数: 0

摘要

在水平凝胶电泳装置中,对半径为46.5 nm的荧光标记聚苯乙烯羧酸酯颗粒在聚合物溶液中进行了电泳,并对其迁移路径进行了间歇扫描。采用了10(6)(葡聚糖、聚乙烯吡咯烷酮、聚丙烯酰胺和聚乙二醇)和10(5)(羟乙基纤维素、聚乙二醇)M(r)级聚合物。在每次应用中,随着聚合物浓度的增加,条带形成,变得对称和变窄。在M(r) 10(6)的聚合物中,分散系数D′随聚合物浓度的减小幅度最大;但是,在这一组中,聚合物的有效性也存在显著差异,这没有得到解释。假设在浓缩聚合物溶液中条带化的可行性将允许类似于在低聚合物浓度CZE中实现的分离,该方法有望克服毛细管电泳在聚合物溶液中固有的缺陷,即条带无法用于免疫学和亲和检测,以及制备规模和制备仪器的复杂性。
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Feasibility of electrophoresis of a subcellular-sized particle in polymer solutions, using automated horizontal gel apparatus.

Electrophoresis in polymer solutions of a fluorescently labeled polystyrene carboxylate particle of 46.5 nm radius was carried out in a horizontal gel electrophoresis apparatus with intermittent scanning of the migration path. Polymers of the order of 10(6) (dextran, polyvinylpyrrolidone, polyacrylamide and polyethyleneglycol) and 10(5) (hydroxyethylcellulose, polyethyleneglycol) M(r) were used. In each application, bands formed, became symmetric and narrowed with increasing polymer concentration. The decrease in dispersion coefficients, D', with polymer concentration was sharpest with the polymers of M(r) 10(6); but significant differences in the effectiveness of polymers within that group also exist which are not accounted for. Provided that the demonstrated feasibility of banding in concentrated polymer solutions will allow for separations similar to those achieved at low polymer concentrations in CZE, the method promises to overcome the inherent shortcomings of capillary electrophoresis in polymer solutions with regard to inaccessibility of bands for immunological and affinity detection as well as to preparative scale and preparative instrumental complexity.

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