Chemical and Food Engineering Department, Federal University of Santa Catarina, ZC 88040-900 Florianópolis, SC, Brazil.
Carbohydr Polym. 2013 Jun 5;95(1):465-70. doi: 10.1016/j.carbpol.2013.02.044. Epub 2013 Mar 4.
β-D-Galactosidase from Kluyveromyces lactis was immobilized on glutaraldehyde-activated chitosan and used in a packed-bed reactor for the continuous hydrolysis of lactose and the synthesis of galactooligosaccharides (GOS). The biocatalyst was tested for its optima pH and temperature, thermal stability in the presence of substrate and products, and operational stability. Immobilization increased the range of operational pH and temperature, and the enzyme thermal stability was sharply increased in the presence of lactose. Almost complete lactose hydrolysis was achieved for both milk whey and lactose solution at 37 °C at flow rates up to 2.6 mL min(-1). Maximal GOS concentration of 26 g L(-1) was obtained at a flow rate of 3.1 mL min(-1), with a productivity of 186 g L(-1) h(-1). Steady-state operation for 15 days showed the reactor stability concerning lactose hydrolysis.
从乳酸克鲁维酵母中提取的β-D-半乳糖苷酶被固定在戊二醛活化的壳聚糖上,并用于填充床反应器中连续水解乳糖和合成半乳糖低聚糖(GOS)。对生物催化剂的最适 pH 值和温度、在底物和产物存在下的热稳定性以及操作稳定性进行了测试。固定化提高了操作 pH 值和温度范围,并且在存在乳糖的情况下,酶的热稳定性大大提高。在 37°C 的流速高达 2.6 mL min(-1)时,乳清和乳糖溶液都能实现几乎完全的乳糖水解。在 3.1 mL min(-1)的流速下,可获得最大 26 g L(-1)的 GOS 浓度,产率为 186 g L(-1) h(-1)。15 天的稳态运行表明,该反应器在乳糖水解方面具有稳定性。