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Influence of protein and carbohydrate contents of soy protein hydrolysates on cell density and IgG production in animal cell cultures

机译:大豆蛋白水解物的蛋白质和碳水化合物含量对动物细胞培养物中细胞密度和IgG产生的影响

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摘要

The variety of compounds present in chemically defined media as well as media supplements makes it difficult to use a mechanistic approach to study the effect of supplement composition on culture functionality. Typical supplements, such as soy protein hydrolysates contain peptides, amino acids, carbohydrates, isoflavones, and saponins. To study the relative contribution of these compound classes, a set of hydrolysates were produced, containing 58-83% proteinaceous material and 5-21% carbohydrates. While the content of the different compounds classes varied, the composition (e.g., peptide profiles, carbohydrate composition) did not vary in hydrolysates. The hydrolysates were supplemented to a chemically defined medium in cell culture, based on equal weight and on equal protein levels. The latter showed that an increase in the carbohydrate concentration significantly (P value<0.004) increased integral viable cell density (IVCD) (R=0.7) and decreased total IgG (R=-0.7) and specific IgG production (R=-0.9). The extrapolation of effects of protein concentration showed that an increase in protein concentration increased total and specific IgG production and suppressed IVCD. In addition to proteins and carbohydrates, the functionality of soy protein hydrolysates may be modulated by the presence of other minor compounds. In the current study, the large differences in the balance between total proteins and total carbohydrates in the supplemented media seem to be a main factor influencing the balance between the viable cell density, total IgG, and specific IgG production. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 31:1396-1405, 2015
机译:化学成分确定的培养基以及培养基补充剂中存在的各种化合物使得难以使用机械方法来研究补充剂组成对培养功能的影响。典型的补品,例如大豆蛋白水解物,包含肽,氨基酸,碳水化合物,异黄酮和皂苷。为了研究这些化合物类别的相对贡献,制备了一组水解产物,其中包含58-83%的蛋白质物质和5-21%的碳水化合物。尽管不同化合物类别的含量变化,但是水解产物的组成(例如,肽谱,碳水化合物组成)没有变化。基于相等的重量和相等的蛋白质水平,将水解产物补充到细胞培养中化学成分确定的培养基中。后者表明,碳水化合物浓度的增加显着(P值<0.004)增加了整体存活细胞密度(IVCD)(R = 0.7),降低了总IgG(R = -0.7)和特定IgG的产生(R = -0.9)。 。蛋白质浓度影响的推断表明,蛋白质浓度增加会增加总和特异性IgG的产生,并抑制IVCD。除蛋白质和碳水化合物外,大豆蛋白水解物的功能还可以通过其他次要化合物的存在来调节。在当前的研究中,补充培养基中总蛋白质和总碳水化合物之间平衡的巨大差异似乎是影响活细胞密度,总IgG和特定IgG产生之间平衡的主要因素。 (c)2015美国化学工程师学会生物技术学会。 Prog。,31:1396-1405,2015

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