首页> 外文期刊>Journal of Agricultural and Food Chemistry >Inhibitory Action of Soybean β-Conglycinin Hydrolysates on Salmonella typhimurium Translocation in Caco-2 Epithelial Cell Monolayers
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Inhibitory Action of Soybean β-Conglycinin Hydrolysates on Salmonella typhimurium Translocation in Caco-2 Epithelial Cell Monolayers

机译:大豆β-伴大豆球蛋白水解物对鼠伤寒沙门氏菌在Caco-2上皮细胞单层转运的抑制作用。

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Soybean protein hydrolysates are widely used as functional foods as they have antioxidative properties able to enhance immune responses in humans. The alcalase enzymatic hydrolysates of β-conglycinin were fractionated by ultrafiltration, and two main fractions, SP1 (<10 kDa) and SP2 (10-20 kDa), were obtained. The effects of these two fractions on the growth, development of epithelial cells, and formation of intercellular tight junctions were tested on an in vitro Caco-2 cell culture system. The inhibitory effects of SP1 and SP2 on the penetration of Salmonella typhimurium into Caco-2 epithelial cells were also examined. The results showed that the addition of >0.05 g/L of SP2 improved epithelial cell growth and that a concentration of 0.5 g/L of SP2 increased intercellular tight junction formation, which resulted in increased of transepithelial monolayer resistance (TER) values. Moreover, a lower S. typhimurium count compared to control was obtained when Caco-2 cells were grown in 0.05 and 0.5 g/L of SP2. These results show that β-conglycinin hydrolysates play an important role in resisting S. typhimurium penetration into intestinal epithelial cells and that high molecular mass peptides (10-20 kDa) were more effective overall than low molecular mass peptides.
机译:大豆蛋白水解产物被广泛用作功能性食品,因为它们具有抗氧化特性,能够增强人类的免疫反应。通过超滤对β-伴大豆球蛋白的alcalase酶水解产物进行分馏,得到两个主要馏分:SP1(<10 kDa)和SP2(10-20 kDa)。在体外Caco-2细胞培养系统上测试了这两个部分对上皮细胞生长,发育和细胞间紧密连接形成的影响。还检查了SP1和SP2对鼠伤寒沙门氏菌渗入Caco-2上皮细胞的抑制作用。结果表明,> 0.05 g / L的SP2添加可改善上皮细胞的生长,而0.5 g / L的SP2浓度可增加细胞间紧密连接的形成,从而导致跨上皮单层电阻(TER)值增加。此外,当Caco-2细胞在0.05和0.5 g / L的SP2中生长时,鼠伤寒沙门氏菌计数比对照组低。这些结果表明,β-伴大豆球蛋白的水解产物在抵抗鼠伤寒沙门氏菌渗入肠上皮细胞中起重要作用,并且高分子量肽(10-20 kDa)总体上比低分子量肽更有效。

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