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首页> 外文期刊>Food research international >Milk fat globule membrane phospholipids modify adhesion of Lactobacillus to mucus-producing Caco-2/Goblet cells by altering the cell envelope
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Milk fat globule membrane phospholipids modify adhesion of Lactobacillus to mucus-producing Caco-2/Goblet cells by altering the cell envelope

机译:乳脂球膜磷脂通过改变细胞包络来改变乳酸杆菌与粘液产生的Caco-2 /脚卷细胞的粘附性

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摘要

The importance of various Lactobacillus strains and milk components, such as the milk fat globule membrane, has been studied from various perspectives and proven to have a positive role in human health. On one end, lactic acid bacteria produce metabolites with direct effect in the immune system, changes of pH in the gut, and antagonistic substances for pathogenic bacteria as well as competition. On the other end, the milk fat globule membrane improves gastrointestinal status by promoting cell proliferation, epithelial tight junction patterns, and development of intestinal epithelial cells. Interaction between beneficial bacteria and milk fat is a natural occurring phenomenon in dairy products; however, it has not been fully characterized. In this work, we studied the effect of milk phospholipids in the adhesion of Lactobacillus to mucus-producing Caco-2/Goblet cell cocultures and found that treatment with phospholipids produced bacterial cells with increased surface electronegativity, which was correlated with increased bacterial cells adhered to the intestinal model. Moreover, we utilized an original means of characterizing the adhesion using quartz crystal microbalance. All strains studied, experienced modification of adhesion either physicochemical or kinetic parameters studied. Furthermore, by imaging bacterial cells by electron microscopy, we identified that some strains, such as L. acidophillus and L. casei, metabolized MPL, which improved their adhesion to hydrophilic surfaces such as gold. We identified another group of bacteria, such as L. delbrueckii and L. plantarum, that, instead of metabolizing MPL, kept the phospholipids bound irreversibly to the surface of the cell envelope thus decreasing their adherence to gold surfaces. One of the most important aspects of probiotic lactic acid bacteria -besides survival in the stomach-is the colonization and extended resident time in the intestine to effectively change the gut microbiome. We found that bacterial treatment with milk phospholipids enhances adhesion to intestinal models and will in turn, increase the residence time with the concomitant benefits to the consumer.
机译:各种乳酸菌菌株和乳脂肪球膜的重要性已经从各种观点研究并经过验证在人体健康中具有积极作用。一端,乳酸菌在免疫系统中产生直接影响的代谢物,肠道中的pH变化,以及致病细菌以及竞争的拮抗物质。另一端,乳脂球膜通过促进细胞增殖,上皮紧密连接和肠上皮细胞的发育而改善胃肠状态。有益细菌与牛奶脂肪之间的相互作用是乳制品中的天然存在的现象;但是,它没有完全表征。在这项工作中,我们研究了乳磷脂在乳酸乳杆菌的粘附到产生粘液的Caco-2 /杯状胶囊细胞培养物中的作用,发现用磷脂的处理产生具有增加的表面电负性的细菌细胞,其与粘附的增加的细菌细胞相关联肠道模型。此外,我们利用了使用石英晶体微稳定表征粘合性的原始方法。研究的所有菌株,经验丰富的粘合性修饰,无论是物理化学或动力学参数都研究。此外,通过通过电子显微镜进行细菌细胞,我们发现一些菌株,例如L. acidophillus和L. casei,代谢的MPL,其改善了它们对亲水性表面的粘附性,例如金。我们鉴定了另一组细菌,例如L. Delbrueckii和L.Platarum,而不是代谢MPL,使磷脂使磷脂不可逆地结合到细胞包膜的表面上,从而降低了它们对金表面的粘附。益生菌乳酸菌的最重要方面是胃中存活的最重要方面 - 是肠道中的定植和延伸的居民时间,以有效地改变肠道微生物组。我们发现用乳磷脂的细菌治疗增强了对肠道模型的粘附性,并又将增加停留时间与消费者的伴随的益处。

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