The search result changed since you submitted your search request. Documents might be displayed in a different sort order.
  • search hit 27 of 5586
Back to Result List

Prebiotic cellulose–pullulan matrix as a “vehicle” for probiotic biofilm delivery to the host large intestine

  • This study describes the development of a new combined polysaccharide-matrix-based technology for the immobilization of Lactobacillus rhamnosus GG (LGG) bacteria in biofilm form. The new composition allows for delivering the bacteria to the digestive tract in a manner that improves their robustness compared with planktonic cells and released biofilm cells. Granules consisting of a polysaccharide matrix with probiotic biofilms (PMPB) with high cell density (>9 log CFU/g) were obtained by immobilization in the optimized nutrient medium. Successful probiotic loading was confirmed by fluorescence microscopy and scanning electron microscopy. The developed prebiotic polysaccharide matrix significantly enhanced LGG viability under acidic (pH 2.0) and bile salt (0.3%) stress conditions. Enzymatic extract of feces, mimicking colon fluid in terms of cellulase activity, was used to evaluate the intestinal release of probiotics. PMPB granules showed the ability to gradually release a large number of viable LGG cells in the model colon fluid. In vivo, the oral administration of PMPB granules in rats resulted in the successful release of probiotics in the colon environment. The biofilm-forming incubation method of immobilization on a complex polysaccharide matrix tested in this study has shown high efficacy and promising potential for the development of innovative biotechnologies.

Export metadata

Additional Services

Share in Twitter Search Google Scholar
Metadaten
Author:Irina Savitskaya, Sirina Zhantlessova, Aida Kistaubayeva, Ludmila Ignatova, Dina Shokatayeva, Yuriy Sinyavsky, Almagul Kushugulova, Ilya DigelORCiD
DOI:https://doi.org/10.3390/polym16010030
Parent Title (English):Polymers
Publisher:MDPI
Place of publication:Basel
Document Type:Article
Language:English
Year of Completion:2023
Date of first Publication:2023/12/20
Date of the Publication (Server):2024/01/08
Tag:Lactobacillus rhamnosus GG; bacterial cellulose; biofilms; immobilization; prebiotic
Issue:16(1)
Length:Artikel 30
Note:
This article belongs to the Section "Polymer Composites and Nanocomposites"
Link:https://doi.org/10.3390/polym16010030
Zugriffsart:weltweit
Institutes:FH Aachen / IfB - Institut für Bioengineering
collections:Verlag / MDPI
Open Access / Gold
Licence (German):License LogoCreative Commons - Namensnennung