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Growth kinetics on oligo- and polysaccharides and promising features of three antioxidative potential probiotic strains

Authors :
Maddalena Rossi
Simona Zanoni
Anna Pompei
Lisa Cordisco
Alberto Amaretti
Diego Matteuzzi
S.Zanoni
A.Pompei
L.Cordisco
A.Amaretti
M.Rossi
D.Matteuzzi
Source :
Journal of applied microbiology. 105(5)
Publication Year :
2008

Abstract

Aims: To determine the antioxidative activity, glutathione production, acid and bile tolerance and carbohydrate preferences of Lactobacillus plantarum LP 1, Streptococcus thermophilus Z 57 and Bifidobacterium lactis B 933. Methods and Results: The intact bacteria exhibited antioxidative capacity against linolenic acid and ascorbate oxidation. The antioxidative activity of cell-free extracts was determined by chemiluminescent assay and agreed with total glutathione content. Superoxide dismutase was negligible in all the strains. Bile and gastric juice resistance was tested in vitro to estimate the transit tolerance in the upper gastrointestinal tract. Bifidobacterium lactis B 933 and L. plantarum LP 1 were more acid tolerant than S. thermophilus Z 57. All the strains were resistant to bile. Among 13 indigestible carbohydrates, galacto-oligosaccharides and fructo-oligosaccharides were utilized by all the strains and did not affect survival in human gastric juice. Conclusions: These potential probiotic strains exhibited antioxidative properties and good viability in gastric juice and bile may indicate tolerance to the transit through the upper gastrointestinal tract. Galacto-oligosaccharides and fructo-oligosaccharides are the most appropriate prebiotics to be used in effective synbiotic formulations. Significance and Impact of the Study: These results outline promising strains with antioxidative properties. Carbohydrate preferences can be exploited in order to develop synbiotic products.

Details

ISSN :
13652672
Volume :
105
Issue :
5
Database :
OpenAIRE
Journal :
Journal of applied microbiology
Accession number :
edsair.doi.dedup.....26eb6cb98dc93a1defbe24b104e7f1a7