Chiari M, Campoleoni A, Conti P, Felli C, Patrosso M C, Brogren C H
Istituto di Chimica degli Ormoni, Milano, Italy.
Electrophoresis. 1996 Mar;17(3):473-8. doi: 10.1002/elps.1150170307.
A new type of agarose polyacrylamide mixed-bed gel, obtained by simultaneous gelation of a novel type of allyl-activated agarose and its copolymerization with acrylamide, has pore sizes intermediate between those of polyacrylamide and agarose. The process used to activate the agarose chains enables the substitution to be controlled. As indicated by nuclear magnetic resonance (NMR), only one allyl group was inserted per agarose basic unit. Several formulations of mixed-bed gels, containing different percentages of acrylamide, were compared with conventional polyacrylamide or agarose gels. Resolution, migration distance and band sharpness of different molecular mass fragments were evaluated, with two types of gel run side-by-side in a vertical or horizontal system. The faster electrophoretic mobility of DNA in dilute mix-bed gels and the improved separation of the component of high molecular mass (1 to 6 kbp) of the 1 kbp ladder indicate that these matrices have larger porosity than any dilute polyacrylamide formulations. Sodium dodecyl sulfate (SDS)-protein complexes migrate in the mixed gels faster than in polyacrylamide gels of the same %T.
一种新型的琼脂糖-聚丙烯酰胺混合床凝胶,通过一种新型烯丙基活化琼脂糖的同时凝胶化及其与丙烯酰胺的共聚反应制得,其孔径介于聚丙烯酰胺和琼脂糖之间。用于活化琼脂糖链的过程能够控制取代反应。如核磁共振(NMR)所示,每个琼脂糖基本单元仅插入一个烯丙基。将含有不同百分比丙烯酰胺的几种混合床凝胶配方与传统聚丙烯酰胺或琼脂糖凝胶进行了比较。在垂直或水平系统中并排运行两种类型的凝胶,评估了不同分子量片段的分辨率、迁移距离和条带清晰度。DNA在稀释混合床凝胶中更快的电泳迁移率以及1kbp梯状条带中高分子量(1至6kbp)组分分离效果的改善表明,这些基质的孔隙率比任何稀释聚丙烯酰胺配方都大。十二烷基硫酸钠(SDS)-蛋白质复合物在混合凝胶中的迁移速度比在相同%T的聚丙烯酰胺凝胶中更快。