Weinborn Valerie, Li Yanhong, Shah Ishita M, Yu Hai, Dallas David C, German J Bruce, Mills David A, Chen Xi, Barile Daniela
Department of Food Science and Technology, University of California Davis, One Shields Avenue, Davis, CA 95616, USA.
Glycohub, Inc., 4070 Truxel Road, Sacramento, CA 95834, USA.
Int Dairy J. 2020 Mar;102. doi: 10.1016/j.idairyj.2019.104583. Epub 2019 Nov 13.
Consumption of mothers' milk is associated with reduced incidence and severity of enteric infections, leading to reduced morbidity in breastfed infants. Fucosylated and sialylated human milk oligosaccharides (HMO) are important for both direct antimicrobial action - likely via a decoy effect - and indirect antimicrobial action through commensal growth enhancement. Bovine milk oligosaccharides (BMO) are a potential source of HMO-mimics as BMO resemble HMO; however, they have simpler and less fucosylated structures. BMO isolated at large scales from bovine whey permeate were modified by the addition of fucose and/or sialic acid to generate HMO-like glycans using high-yield and cost-effective one-pot multienzyme approaches. Quadrupole time-of-flight LC/MS analysis revealed that 22 oligosaccharides were synthesized and 9 had identical composition to known HMO. Preliminary anti-adherence activity assays indicated that fucosylated BMO decreased the uptake of enterohemorrhagic O157:H7 by human intestinal epithelial Caco-2 cells more effectively than native BMO.
食用母乳与肠道感染的发病率和严重程度降低相关,从而降低母乳喂养婴儿的发病率。岩藻糖基化和唾液酸化的人乳寡糖(HMO)对于直接抗菌作用(可能通过诱饵效应)和通过促进共生菌生长的间接抗菌作用都很重要。牛乳寡糖(BMO)是HMO模拟物的潜在来源,因为BMO与HMO相似;然而,它们的结构更简单,岩藻糖基化程度更低。使用高产且经济高效的一锅多酶方法,通过添加岩藻糖和/或唾液酸对从牛乳清渗透物中大规模分离的BMO进行修饰,以生成类似HMO的聚糖。四极杆飞行时间液相色谱/质谱分析表明,合成了22种寡糖,其中9种与已知HMO的组成相同。初步的抗黏附活性测定表明,岩藻糖基化的BMO比天然BMO更有效地降低人肠道上皮Caco-2细胞对肠出血性O157:H7的摄取。