Department of Food Science and Technology, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.
Probiotics Antimicrob Proteins. 2023 Dec;15(6):1529-1538. doi: 10.1007/s12602-022-10007-9. Epub 2022 Nov 14.
Based on the adhesion and surface properties of Lactobacillus acidophilus NCFM, five common polyphenols in fruits and vegetables, including resveratrol, epicatechin, quercetin, hesperidin, and caffeic acid, were screened, and the reasons for resveratrol promoting adhesion were systematically explained. The results showed that resveratrol could significantly enhance NCFM adhesion to mucin (1.73 fold), followed by epicatechin (1.47 fold), caffeic acid (1.30 fold), and hesperidin (0.99 fold), while quercetin had a certain degree of inhibition (0.84 fold). The effects of these polyphenols on surface hydrophobicity and auto-aggregation of NCFM were consistent with adhesion results. Then, how resveratrol promotes NCFM adhesion was further explored. The results of the proteomic analysis showed that resveratrol changed the surface layer proteins of NCFM, involving 4 up-regulated proteins and 12 down-regulated proteins. In addition, resveratrol promoted the expression of mucin genes and the glycosylation of mucins on the HT-29 cell surface. Our results indicate that resveratrol changes the surface layer proteins of NCFM to modify surface properties and adhere to mucins. Meanwhile, resveratrol promotes expression and glycosylation of mucins in HT-29 cells. Our findings provide theoretical support for an in-depth explanation of the interaction among resveratrol, NCFM, and the HT-29 cells.
基于嗜酸乳杆菌 NCFM 的黏附性和表面特性,筛选了包括白藜芦醇、表儿茶素、槲皮素、橙皮苷和咖啡酸在内的五种常见果蔬多酚,系统解释了白藜芦醇促进黏附的原因。结果表明,白藜芦醇能显著增强 NCFM 对黏蛋白的黏附能力(增加 1.73 倍),其次是表儿茶素(增加 1.47 倍)、咖啡酸(增加 1.30 倍)和橙皮苷(增加 0.99 倍),而槲皮素有一定程度的抑制作用(减少 0.84 倍)。这些多酚对 NCFM 表面疏水性和自聚集的影响与黏附结果一致。然后,进一步探索了白藜芦醇促进 NCFM 黏附的机制。蛋白质组学分析结果表明,白藜芦醇改变了 NCFM 的表面层蛋白,涉及 4 个上调蛋白和 12 个下调蛋白。此外,白藜芦醇促进了 HT-29 细胞表面黏蛋白基因的表达和黏蛋白的糖基化。我们的结果表明,白藜芦醇通过改变 NCFM 的表面层蛋白来修饰表面特性并黏附于黏蛋白。同时,白藜芦醇促进 HT-29 细胞中黏蛋白的表达和糖基化。我们的研究结果为深入解释白藜芦醇、NCFM 和 HT-29 细胞之间的相互作用提供了理论依据。