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Exploring the Effect of Ultrafiltration/Diafiltration Processing Conditions on the Lactoferrin and Immunoglobulin G Content of Feta Whey Protein Concentrates

机译:探讨超滤/渗滤处理条件对胎儿乳清蛋白浓缩物的乳铁蛋白和免疫球蛋白G含量的影响

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摘要

In this paper, the production of powder enriched in lactoferrin (Lf) and immunoglobulin G (IgG) from untreated feta cheese whey is studied. More specifically, the influence of transmembrane pressure (Δp) and temperature on flux and separation ability during ultrafiltration combined with continuous diafiltration is investigated. Two different types of membranes were used, a spiral polyvinylidene fluoride (PVDF) (molecular weight cut-off [MWCO 75 kDa) and a set of 18 cylindrical PVDF membranes (MWCO 100 kDa). For the production of the whey powder, two drying methods were compared: spray and freeze drying. All combinations lead to powder with high total protein content and with a notable content in these two bioactive proteins. However, cylindrical membranes (at a temperature of 20C and a transmembrane pressure of 4 bar) in combination with freeze drying resulted in the highest yield from whey into Lf and IgG and excellent sensory characteristics. Practical Applications Whey powder enriched in the multifunctional proteins lactoferrin and immunoglobulin G have very large potential both as nutrition additives and for pharmaceutical purposes. The systematic study of the parameters affecting all unit operations involved leads to the most efficient and cheapest production. In order to achieve this, the methodology was kept as simple and low cost as possible. This way, a strong tool could be created for the utilization of the cheese-making by-product whey, which still causes large environmental problems.
机译:在本文中,研究了来自未处理的胎儿乳酪乳清乳清蛋白(LF)和免疫球蛋白G(IgG)的粉末的生产。更具体地,研究了跨膜压力(ΔP)和温度对超滤期间的通量和分离能力的影响结合连续渗滤。使用两种不同类型的膜,螺旋聚偏二氟乙烯(PVDF)(分子量切断[MWCO 75kDA)和一组18个圆柱形PVDF膜(MWCO 100kDa)。对于乳清粉的生产,比较了两种干燥方法:喷雾和冷冻干燥。所有组合导致粉末,具有高总蛋白质含量和这两种生物活性蛋白中的显着含量。然而,圆柱形膜(在20℃的温度和4巴的跨膜压力下)与冷冻干燥组合导致乳清中的最高产量和IgG和优异的感官特性。实际应用富含多功能蛋白质乳蛋白和免疫球蛋白G中富含营养添加剂的潜力和药物目的的实用应用。影响影响所有单元操作的参数的系统研究导致最有效和最便宜的生产。为了实现这一目标,该方法尽可能简单,成本低。这样,可以为利用奶酪制作副产品乳清来创造强大的工具,这仍然导致大规模的环境问题。

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