Sabater Carlos, Olano Agustín, Prodanov Marin, Montilla Antonia, Corzo Nieves
Departamento de Bioactividad y Análisis de Alimentos, Instituto de Investigación en Ciencias de la Alimentación CIAL, Madrid, Spain.
Departamento de Producción y Caracterización de Nuevos Alimentos, Instituto de Investigación en Ciencias de la Alimentación CIAL, Madrid, Spain.
J Sci Food Agric. 2017 Dec;97(15):5074-5082. doi: 10.1002/jsfa.8384. Epub 2017 Jun 9.
One of the most promising uses of whey permeate (WP) is the synthesis of prebiotic oligosaccharides. Herein, commercial WP was submitted to chemical isomerization catalysed by sodium borate at an alkaline pH and subsequent purification using anion-exchange resins to remove boron. Subsequently, purified mixtures were used to synthesize prebiotic oligosaccharides using β-galactosidase from Bacillus circulans.
Isomerization of concentrated WP (200 g L lactose) gave rise to levels of lactulose up to 155.5 g L after 30 min of reaction (molar ratio of boron/lactose, 1/1; pH 12; 70 °C). Boron was removed from the isomerized WP (IWP) using the combination of a strong acid (IR-120, H ) and a weak base (IRA-743) anion-exchange resins, reducing its level to <1 ppm, without loss of lactulose. During the transglycosylation reaction of purified IWP (lactose/lactulose ratio, 1/2.4) maximum content of prebiotic compounds was achieved, i.e. 690 g kg WP after 3 h of reaction.
This study shows that combined chemical-enzymatic reactions together with the purification of IWP results in an efficient synthesis of prebiotic oligosaccharides. © 2017 Society of Chemical Industry.
乳清渗透物(WP)最有前景的用途之一是合成益生元低聚糖。在此,将市售WP在碱性pH条件下进行硼酸钠催化的化学异构化反应,随后使用阴离子交换树脂进行纯化以去除硼。随后,使用来自环状芽孢杆菌的β-半乳糖苷酶,将纯化后的混合物用于合成益生元低聚糖。
浓缩WP(200 g/L乳糖)在反应30分钟后(硼/乳糖摩尔比为1/1;pH 12;70°C)异构化产生的乳果糖水平高达155.5 g/L。使用强酸(IR-120,H)和弱碱(IRA-743)阴离子交换树脂组合从异构化WP(IWP)中去除硼,将其水平降低至<1 ppm,且乳果糖无损失。在纯化的IWP的转糖基化反应过程中(乳糖/乳果糖比例为1/2.4),在反应3小时后达到了益生元化合物的最大含量,即690 g/kg WP。
本研究表明,化学-酶促反应与IWP的纯化相结合可有效合成益生元低聚糖。© 2017化学工业协会。