首页> 外文期刊>Boletim Centro de Pesquisa e Processamento de Alimentos >MAJOR GOAT MILK PROTEIN: SEPARATION AND CHARACTERIZATION BY “LAB-ON-A-CHIP” MICROFLUIDIC ELECTROPHORES
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MAJOR GOAT MILK PROTEIN: SEPARATION AND CHARACTERIZATION BY “LAB-ON-A-CHIP” MICROFLUIDIC ELECTROPHORES

机译:主要山羊奶蛋白:“芯片上实验室”微流态电泳法的分离和表征

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This work presents the electrophoretic profile of goat and cow milk samples and their mixtures using microfluidic and conventional electrophoresis. The microfluidic method allowed the separation of the major caseins from milk, excepting the goat κ-casein. Besides, the major whey proteins were separated with perfect distinction of A and B β-lactoglobulin variants. Comparing to SDS-PAGE, a variation in the molecular weight was observed in all milk proteins. However, A and B β-lactoglobulin variants could not be isolated using SDS-PAGE. Although urea-PAGE did not show high resolution among whey proteins, γ-, κ-, β-, and α-caseins were clearly identified. This method also showed a lower limit detection of cow milk in mixture samples than the "lab-on-a-chip" electrophoresis. In both methods, the highest linearity obtained from plotting total percentage against cow milk concentration was observed by using cow αs1-casein (R2 = 0.986 and R2 = 0.973). This result indicates that microfluidic electrophoresis is an effective tool to detect the presence of some proteins in goat and cow milk, and in mixtures. Microfluidic chip technology might will complement the current methods for analyzing milk proteins, highlighting its speed amount of reagents and whey protein separation, which showed a better result than urea or SDS-PAGE.
机译:这项工作介绍了使用微流控和常规电泳技术对山羊和牛奶样品及其混合物的电泳图谱。微流控方法可从牛奶中分离出主要酪蛋白,但山羊κ酪蛋白除外。此外,主要乳清蛋白的分离具有A和Bβ-乳球蛋白变体的完美区分。与SDS-PAGE相比,在所有牛奶蛋白中均观察到分子量变化。但是,无法使用SDS-PAGE分离A和Bβ-乳球蛋白变体。尽管尿素-PAGE在乳清蛋白中未显示高分辨率,但可以清楚地鉴定出γ-,κ-,β-和α-酪蛋白。与“芯片实验室”电泳相比,该方法还显示了混合样品中牛奶的下限检测。在这两种方法中,使用奶牛αs1-酪蛋白(R2 = 0.986和R2 = 0.973)观察到的总线性相对于牛奶浓度绘制的最高线性。该结果表明,微流体电泳是检测山羊奶,牛奶和混合物中某些蛋白质的有效工具。微流控芯片技术可能会补充当前分析牛奶蛋白的方法,突出显示其试剂和乳清蛋白分离的速度,其结果比尿素或SDS-PAGE更好。

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