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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Microchip isoelectric focusing with monolithic immobilized pH gradient materials for proteins separation.
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Microchip isoelectric focusing with monolithic immobilized pH gradient materials for proteins separation.

机译:微芯片等电聚焦,采用整体式固定pH梯度材料进行蛋白质分离。

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Monolithic immobilized pH gradient (M-IPG) materials were prepared in microchannles by photoinitiated polymerization of acrylamide, glycidylmethacrylate and Bis, followed by the attachment of focused Ampholine onto the surface of porous monoliths via epoxide groups. With M-IPG materials as matrix, FITC-labeled ribonuclease B, myoglobin and alpha-casein were well separated by microchip isoelectric focusing (muCIEF) without carrier amphocytes (CAs) added in the buffer. Both chemical and pressure mobilization were applied to drive focused zones for LIF detection. Our experimental results showed that pressure mobilization was preferable with neglectable band broadening, and good peak shape and high detection sensitivity were obtained. All these results demonstrate that muCIEF with M-IPG materials is not only an efficient mode for protein enrichment and separation but also attractive to couple with other CE modes to achieve multi-dimensional separation or MS for further identification, without the interference of mobile CAs.
机译:通过光引发丙烯酰胺,甲基丙烯酸缩水甘油酯和Bis的光引发聚合,然后通过环氧基将聚焦的两性苯环附着到多孔整料的表面上,在微通道中制备整料固定的pH梯度(M-IPG)材料。以M-IPG材料为基质,通过微芯片等电聚焦(muCIEF)将FITC标记的核糖核酸酶B,肌红蛋白和α-酪蛋白很好地分离,而无需在缓冲液中添加载体两性淋巴细胞(CAs)。使用化学动员和压力动员来驱动聚焦区域进行LIF检测。我们的实验结果表明,压力动员是可取的,而谱带增宽可忽略不计,并且获得了良好的峰形和高检测灵敏度。所有这些结果表明,含M-IPG材料的muCIEF不仅是蛋白质富集和分离的有效模式,而且与其他CE模式结合以实现多维分离或MS进一步鉴定而不受移动CA的干扰也很有吸引力。

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