• Title of article

    Effect of grape polyphenols on lactic acid bacteria and bifidobacteria growth: Resistance and metabolism Original Research Article

  • Author/Authors

    Raquel Tabasco، نويسنده , , Fernando S?nchez-Pat?n، نويسنده , , Mar?a Monagas، نويسنده , , Begona Bartolome ، نويسنده , , M. Victoria Moreno-Arribas، نويسنده , , Carmen Pel?ez، نويسنده , , Teresa Requena، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    8
  • From page
    1345
  • To page
    1352
  • Abstract
    Food polyphenols are able to selectively modify the growth of susceptible micro-organisms. This study describes the effect of a flavan-3-ol enriched grape seed extract (GSE) on the growth of several lactic acid bacteria (LAB) and bifidobacteria and the ability of the resistant strains to metabolize these compounds. Streptococcus thermophilus, Lactobacillus fermentum, Lactobacillus acidophilus and Lactobacillus vaginalis strains showed a remarkable sensitivity to the phenolic extracts assayed, including a GSE fraction consisting mainly in (+)-catechin and (−)-epicatechin (GSE-M). On the other hand, Lactobacillus plantarum, Lactobacillus casei, and Lactobacillus bulgaricus strains reached maximal growth with the GSE fractions, including a rich-oligomeric (GSE-O) fraction. Within bifidobacteria, Bifidobacterium lactis BB12 showed the highest sensitivity to the phenolic extracts assayed, whereas Bifidobacterium breve 26M2 and Bifidobacterium bifidum HDD541 reached maximum growth in presence of GSE-O and GSE-M fractions. Metabolism of flavan-3-ols by LAB and bifidobacteria resistant strains was investigated in vitro. The results revealed that only L. plantarum IFPL935 was able to metabolize the polyphenols studied by means of galloyl-esterase, decarboxylase and benzyl alcohol dehydrogenase activities that led to the formation of gallic acid, pyrogallol and catechol, respectively. An unknown metabolite that does not exhibit a phenolic-acid-type structure was also detected, which suggests a new enzyme activity in L. plantarum IFPL935 able to degrade flavan-3-ol monomers.
  • Keywords
    Lactic acid bacteria , Bifidobacteria , Flavan-3-ols , Grape seed polyphenols , Procyanidins
  • Journal title
    Food Microbiology
  • Serial Year
    2011
  • Journal title
    Food Microbiology
  • Record number

    1186356