Adhesion of Bifidobacteria to Granular Starch and Its Implications in Probiotic Technologies
Open Access
- 1 August 2001
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 67 (8), 3469-3475
- https://doi.org/10.1128/aem.67.8.3469-3475.2001
Abstract
Adhesion of 19 Bifidobacterium strains to native maize, potato, oat, and barley starch granules was examined to investigate links between adhesion and substrate utilization and to determine if adhesion to starch could be exploited in probiotic food technologies. Starch adhesion was not characteristic of all the bifidobacteria tested. Adherent bacteria bound similarly to the different types of starch, and the binding capacity of the starch (number of bacteria per gram) correlated to the surface area of the granules. Highly adherent strains were able to hydrolyze the granular starches, but not all amylolytic strains were adherent, indicating that starch adhesion is not a prerequisite for efficient substrate utilization for all bifidobacteria. Adhesion was mediated by a cell surface protein(s). For the model organisms tested (Bifidobacterium adolescentis VTT E-001561 andBifidobacterium pseudolongum ATCC 25526), adhesion appeared to be specific for α-1,4-linked glucose sugars, since adhesion was inhibited by maltose, maltodextrin, amylose, and soluble starch but not by trehalose, cellobiose, or lactose. In an in vitro gastric model, adhesion was inhibited both by the action of protease and at pH values of ≤3. Adhesion was not affected by bile, but the binding capacity of the starch was reduced by exposure to pancreatin. It may be possible to exploit adhesion of probiotic bifidobacteria to starch granules in microencapsulation technology and for synbiotic food applications.Keywords
This publication has 27 references indexed in Scilit:
- Digestion of so-called resistant starch sources in the human small intestineThe American Journal of Clinical Nutrition, 2000
- The effects of the surface charge and hydrophobicity of Escherichia coli on its adhesion to beef muscleInternational Journal of Food Microbiology, 1999
- Probiotics: towards demonstrating efficacyTrends in Food Science & Technology, 1999
- The protective effects of high amylose maize (amylomaize) starch granules on the survival of Bifidobacterium spp. in the mouse intestinal tractJournal of Applied Microbiology, 1999
- The evolution of starch‐binding domainFEBS Letters, 1999
- Functional food properties of non-digestible oligosaccharides: a consensus report from the ENDO project (DGXII AIRII-CT94-1095)British Journal of Nutrition, 1999
- Role of intestinal bacteria in nutrient metabolismClinical Nutrition, 1997
- Factors affecting the microecology of the gutPublished by Springer Nature ,1992
- Probiotics in man and animalsJournal of Applied Bacteriology, 1989
- Starch utilization by the human large intestinal microfloraJournal of Applied Bacteriology, 1986