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使用带正电荷的超滤膜从乳清中分离糖巨肽。

Fractionation of Glycomacropeptide from Whey Using Positively Charged Ultrafiltration Membranes.

作者信息

Arunkumar Abhiram, Etzel Mark R

机构信息

Department of Chemical and Biological Engineering, University of Wisconsin, 1605 Linden Dr., Madison, WI 53706, USA.

出版信息

Foods. 2018 Oct 9;7(10):166. doi: 10.3390/foods7100166.

Abstract

Fractionation of the bovine glycomacropeptide (GMP) from the other proteins in cheese whey was examined using ultrafiltration membranes surface modified to contain positively charged polymer brushes made of polyhexamethylene biguanide. By placing a strong positive charge on a 1000 kDa ultrafiltration membrane and adjusting the pH of whey close to the isoelectric point of GMP, a 14-fold increase in selectivity was observed compared to unmodified membranes. A one stage membrane system gave 90% pure GMP and a three-stage rectification system gave 97% pure GMP. The charged membrane was salt-tolerant up to 40 mS cm conductivity, allowing fractionation of GMP directly from cheese whey without first lowering the whey conductivity by water dilution. Thus, similarly sized proteins that differed somewhat in isoelectric points and were 50⁻100 fold smaller than the membrane molecular weight cut-off (MWCO), were cleanly fractionated using charged ultrafiltration membranes without water addition. This is the first study to report on the use of salt-tolerant charged ultrafiltration membranes to produce chromatographically pure protein fractions from whey, making ultrafiltration an attractive alternative to chromatography for dairy protein fractionation.

摘要

使用表面修饰有由聚六亚甲基双胍制成的带正电荷聚合物刷的超滤膜,研究了从奶酪乳清中的其他蛋白质中分离牛糖巨肽(GMP)的方法。通过在1000 kDa超滤膜上施加强正电荷,并将乳清的pH值调节至接近GMP的等电点,与未修饰的膜相比,选择性提高了14倍。单级膜系统得到的GMP纯度为90%,三级精馏系统得到的GMP纯度为97%。带电膜在电导率高达40 mS/cm时具有耐盐性,允许直接从奶酪乳清中分离GMP,而无需先通过加水稀释降低乳清电导率。因此,等电点略有不同且比膜截留分子量(MWCO)小50至100倍的大小相似的蛋白质,可以使用带电超滤膜在不加水的情况下进行清晰分离。这是第一项报道使用耐盐带电超滤膜从乳清中生产色谱纯蛋白质级分的研究,这使得超滤成为乳制品蛋白质分级分离中色谱法的一个有吸引力的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1037/6210718/d0b0cc255331/foods-07-00166-g001.jpg

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