动物双歧杆菌亚种的粘附机制。乳糖JCM 10602为膳食纤维。

IF 3.1 4区 医学 Q2 Agricultural and Biological Sciences
Bioscience of Microbiota, Food and Health Pub Date : 2021-01-01 Epub Date: 2020-10-03 DOI:10.12938/bmfh.2020-003
Maria Taniguchi, Minori Nambu, Yoshio Katakura, Shino Yamasaki-Yashiki
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引用次数: 4

摘要

益生菌粘附在肠道膳食纤维上可能影响其对肠上皮细胞的粘附。双歧杆菌与粘蛋白或上皮细胞的粘附特性已经得到了很好的研究;然而,尚未对双歧杆菌对膳食纤维的粘附进行研究。测定了6株双歧杆菌对纤维素和几丁质的粘附率;其中,动物双歧杆菌亚种;乳酸菌JCM 10602对纤维素和几丁质均有较高的粘附性,其中2株仅对几丁质有较高的粘附性。动物双歧杆菌对纤维素和几丁质的粘附率分别与离子强度成正相关和负相关。这些数据表明疏水和静电相互作用分别参与了纤维素和几丁质的粘附。对数期后期细胞对纤维素和几丁质的黏附率分别比对数期早期细胞降低了约40%和70%。此外,无论细胞的培养阶段如何,与纤维素的粘附比随着胆汁浓度的增加而降低。另一方面,随着胆汁浓度的增加,对数早期细胞与几丁质的粘附比降低;而对数后期细胞的黏附素略有增加,说明黏附素随培养阶段的不同而不同。我们的研究结果表明,在使用双歧杆菌作为益生菌时,考虑其对膳食纤维和肠黏膜的粘附是很重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adhesion mechanisms of <i>Bifidobacterium animalis</i> subsp. <i>lactis</i> JCM 10602 to dietary fiber.

Adhesion mechanisms of <i>Bifidobacterium animalis</i> subsp. <i>lactis</i> JCM 10602 to dietary fiber.

Adhesion mechanisms of <i>Bifidobacterium animalis</i> subsp. <i>lactis</i> JCM 10602 to dietary fiber.

Adhesion mechanisms of Bifidobacterium animalis subsp. lactis JCM 10602 to dietary fiber.

Adherence of probiotics to dietary fibers present in the intestinal tract may affect adhesion to intestinal epithelial cells. The properties of the adhesion of bifidobacteria to mucin or epithelial cells have been well studied; however, adhesion of bifidobacteria to dietary fiber has not been investigated. The adhesion ratio of six Bifidobacterium strains to cellulose and chitin was examined; among the strains, Bifidobacterium animalis subsp. lactis JCM 10602 showed high adherence to both cellulose and chitin, and two strains showed high adherence to only chitin. The ratios of adhesion of B. animalis to cellulose and chitin were positively and negatively correlated with ionic strength, respectively. These data suggest that hydrophobic and electrostatic interactions are involved in the adhesion to cellulose and chitin, respectively. The adhesion ratios of the cells in the late logarithmic phase to cellulose and chitin decreased by approximately 40% and 70% of the cells in the early logarithmic phase, respectively. Furthermore, the adhesion ratio to cellulose decreased with increasing bile concentration regardless of the culture phase of the cells. On the other hand, the adhesion ratio to chitin of cells in the early logarithmic phase decreased with increasing bile concentration; however, that of cells in the late logarithmic phase increased slightly, suggesting that adhesins differ depending on the culture phase. Our results indicated the importance of considering adhesion to both dietary fibers and the intestinal mucosa when using bifidobacteria as probiotics.

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来源期刊
Bioscience of Microbiota, Food and Health
Bioscience of Microbiota, Food and Health Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
5.50
自引率
3.20%
发文量
24
期刊介绍: Bioscience of Microbiota, Food and Health (BMFH) is a peer-reviewed scientific journal with a specific area of focus: intestinal microbiota of human and animals, lactic acid bacteria (LAB) and food immunology and food function. BMFH contains Full papers, Notes, Reviews and Letters to the editor in all areas dealing with intestinal microbiota, LAB and food immunology and food function. BMFH takes a multidisciplinary approach and focuses on a broad spectrum of issues.
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