Dainiak Maria B, Galaev Igor Yu, Mattiasson Bo
Protista Biotechnology AB, IDEON, SE-223 70 Lund, Sweden.
J Chromatogr A. 2006 Aug 11;1123(2):145-50. doi: 10.1016/j.chroma.2006.05.089. Epub 2006 Jul 18.
Suitable conditions for separating cells using a chromatographic procedure were evaluated in parallel chromatography on minicolumns. A 96-hole minicolumn plate filled with cryogel monoliths (18.8 mm x 7.1 mm Ø) with immobilized concanavalin A was used. Chromatographic columns (113 mm x 7.1 mm Ø) were used for chromatographic resolution of a mixture of Saccharomyces cerevisiae and Escherichia coli cells. Separation of a cell mixture containing equal amounts of cells of both types performed in a column format under the determined optimal conditions, resulted in a quantitative capture of applied S. cerevisiae cells, while E. coli passed through the column. Bound S. cerevisiae cells were released by flow-induced detachment and by compression of the adsorbent in the presence of 0.3 M methyl alpha-D-manno-pyranoside. The flowthrough and the eluted fractions were analyzed by plate counting and by registering metabolic activity of S. cerevisiae cells in the eluted fractions after capturing on ConA-cryogel monoliths in a 96-minicolumn plate format. The flowthrough fraction contained E. coli cells with nearly 100% purity, whereas the fraction eluted by compression of the adsorbent contained viable S. cerevisiae cells with 95% purity. Thus, an efficient chromatographic separation of cells was achieved using affinity cryogel column.
在微柱平行色谱中评估了使用色谱程序分离细胞的合适条件。使用了一个96孔微柱板,其中填充有固定化伴刀豆球蛋白A的冷冻凝胶整体柱(18.8毫米×7.1毫米Ø)。色谱柱(113毫米×7.1毫米Ø)用于酿酒酵母和大肠杆菌细胞混合物的色谱分离。在确定的最佳条件下,以柱形式对含有等量两种类型细胞的细胞混合物进行分离,结果定量捕获了施加的酿酒酵母细胞,而大肠杆菌则通过了柱子。结合的酿酒酵母细胞通过流动诱导脱离和在0.3 Mα-D-甘露糖吡喃糖苷存在下压缩吸附剂而释放。通过平板计数以及在96孔微柱板形式的伴刀豆球蛋白A-冷冻凝胶整体柱上捕获后记录洗脱级分中酿酒酵母细胞的代谢活性,对流出物和洗脱级分进行分析。流出级分包含纯度近100%的大肠杆菌细胞,而通过压缩吸附剂洗脱的级分包含纯度95%的活酿酒酵母细胞。因此,使用亲和冷冻凝胶柱实现了细胞的高效色谱分离。