Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator

The selection of probiotic strains resistant to gastrointestinal transit is an important stage when developing supplements that contain viable biomass. A total of six strains belonging to different genotypes were tested and compared with both a positive and negative control (Lactobacillus plantarum...

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Main Author: Emanuel Vamanu
Format: Article
Language:English
Published: Elsevier 2017-11-01
Series:Saudi Journal of Biological Sciences
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1319562X15001618
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spelling doaj-c5713a52be35420cb9701832f3ac4d562020-11-24T22:46:56ZengElsevierSaudi Journal of Biological Sciences1319-562X2017-11-012471453145710.1016/j.sjbs.2015.06.028Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulatorEmanuel VamanuThe selection of probiotic strains resistant to gastrointestinal transit is an important stage when developing supplements that contain viable biomass. A total of six strains belonging to different genotypes were tested and compared with both a positive and negative control (Lactobacillus plantarum 5s). Significant differences were found between strains as a result of gastrointestinal transit using the in vitro GIS1 static simulator. The Lactobacillus rhamnosus 428ST strain showed maximum viability as a result of in vitro transit, featuring a survival capacity value, Cs, of over 50 ± 0.01%. The remaining genotypes that were tested showed significant reductions in the enzymes and bile salts at the time of action. The value of the survivability capacity was directly correlated with the synthesis of exopolysaccharides and lactic acid. The test results of the GIS1 system have been compared with those of other studies on gastrointestinal transit resistance that used dynamic models.http://www.sciencedirect.com/science/article/pii/S1319562X15001618Lactic acid bacteriaGIS1 simulatorProbioticViscosity
collection DOAJ
language English
format Article
sources DOAJ
author Emanuel Vamanu
spellingShingle Emanuel Vamanu
Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
Saudi Journal of Biological Sciences
Lactic acid bacteria
GIS1 simulator
Probiotic
Viscosity
author_facet Emanuel Vamanu
author_sort Emanuel Vamanu
title Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
title_short Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
title_full Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
title_fullStr Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
title_full_unstemmed Effect of gastric and small intestinal digestion on lactic acid bacteria activity in a GIS1 simulator
title_sort effect of gastric and small intestinal digestion on lactic acid bacteria activity in a gis1 simulator
publisher Elsevier
series Saudi Journal of Biological Sciences
issn 1319-562X
publishDate 2017-11-01
description The selection of probiotic strains resistant to gastrointestinal transit is an important stage when developing supplements that contain viable biomass. A total of six strains belonging to different genotypes were tested and compared with both a positive and negative control (Lactobacillus plantarum 5s). Significant differences were found between strains as a result of gastrointestinal transit using the in vitro GIS1 static simulator. The Lactobacillus rhamnosus 428ST strain showed maximum viability as a result of in vitro transit, featuring a survival capacity value, Cs, of over 50 ± 0.01%. The remaining genotypes that were tested showed significant reductions in the enzymes and bile salts at the time of action. The value of the survivability capacity was directly correlated with the synthesis of exopolysaccharides and lactic acid. The test results of the GIS1 system have been compared with those of other studies on gastrointestinal transit resistance that used dynamic models.
topic Lactic acid bacteria
GIS1 simulator
Probiotic
Viscosity
url http://www.sciencedirect.com/science/article/pii/S1319562X15001618
work_keys_str_mv AT emanuelvamanu effectofgastricandsmallintestinaldigestiononlacticacidbacteriaactivityinagis1simulator
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