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Berry flavonoids and phenolics: bioavailability and evidence of protective effects
by
Del Rio, Daniele
, Borges, Gina
, Crozier, Alan
in
Animals
/ anthocyanins
/ ascorbic acid
/ Berries
/ Bioavailability
/ Biological Availability
/ brain
/ chemistry
/ circulatory system
/ Colon
/ Colon - metabolism
/ Colon - microbiology
/ Diet
/ Dietary polyphenols
/ eyes
/ flavanols
/ Flavonoids
/ Flavonoids - metabolism
/ Flavonoids - pharmacology
/ flavonols
/ Fruit
/ Fruit - chemistry
/ Gastrointestinal Agents
/ Gastrointestinal Agents - metabolism
/ Gastrointestinal Agents - pharmacology
/ Gastrointestinal tract
/ Humans
/ Intestinal Absorption
/ large intestine
/ Matrix effects
/ Metabolism
/ Metabolites
/ microbiology
/ microorganisms
/ Nutrition research
/ pharmacology
/ phenolic acids
/ Phenols
/ Phenols - metabolism
/ Phenols - pharmacology
/ Physiology
/ Phytochemicals
/ Plant Extracts
/ Plant Extracts - metabolism
/ Plant Extracts - pharmacology
/ Polyphenols
/ procyanidins
/ Protective Agents
/ Protective Agents - metabolism
/ Protective Agents - pharmacology
/ protective effect
/ Protective effects
/ Tissue Distribution
2010
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Berry flavonoids and phenolics: bioavailability and evidence of protective effects
by
Del Rio, Daniele
, Borges, Gina
, Crozier, Alan
in
Animals
/ anthocyanins
/ ascorbic acid
/ Berries
/ Bioavailability
/ Biological Availability
/ brain
/ chemistry
/ circulatory system
/ Colon
/ Colon - metabolism
/ Colon - microbiology
/ Diet
/ Dietary polyphenols
/ eyes
/ flavanols
/ Flavonoids
/ Flavonoids - metabolism
/ Flavonoids - pharmacology
/ flavonols
/ Fruit
/ Fruit - chemistry
/ Gastrointestinal Agents
/ Gastrointestinal Agents - metabolism
/ Gastrointestinal Agents - pharmacology
/ Gastrointestinal tract
/ Humans
/ Intestinal Absorption
/ large intestine
/ Matrix effects
/ Metabolism
/ Metabolites
/ microbiology
/ microorganisms
/ Nutrition research
/ pharmacology
/ phenolic acids
/ Phenols
/ Phenols - metabolism
/ Phenols - pharmacology
/ Physiology
/ Phytochemicals
/ Plant Extracts
/ Plant Extracts - metabolism
/ Plant Extracts - pharmacology
/ Polyphenols
/ procyanidins
/ Protective Agents
/ Protective Agents - metabolism
/ Protective Agents - pharmacology
/ protective effect
/ Protective effects
/ Tissue Distribution
2010
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Berry flavonoids and phenolics: bioavailability and evidence of protective effects
by
Del Rio, Daniele
, Borges, Gina
, Crozier, Alan
in
Animals
/ anthocyanins
/ ascorbic acid
/ Berries
/ Bioavailability
/ Biological Availability
/ brain
/ chemistry
/ circulatory system
/ Colon
/ Colon - metabolism
/ Colon - microbiology
/ Diet
/ Dietary polyphenols
/ eyes
/ flavanols
/ Flavonoids
/ Flavonoids - metabolism
/ Flavonoids - pharmacology
/ flavonols
/ Fruit
/ Fruit - chemistry
/ Gastrointestinal Agents
/ Gastrointestinal Agents - metabolism
/ Gastrointestinal Agents - pharmacology
/ Gastrointestinal tract
/ Humans
/ Intestinal Absorption
/ large intestine
/ Matrix effects
/ Metabolism
/ Metabolites
/ microbiology
/ microorganisms
/ Nutrition research
/ pharmacology
/ phenolic acids
/ Phenols
/ Phenols - metabolism
/ Phenols - pharmacology
/ Physiology
/ Phytochemicals
/ Plant Extracts
/ Plant Extracts - metabolism
/ Plant Extracts - pharmacology
/ Polyphenols
/ procyanidins
/ Protective Agents
/ Protective Agents - metabolism
/ Protective Agents - pharmacology
/ protective effect
/ Protective effects
/ Tissue Distribution
2010
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Berry flavonoids and phenolics: bioavailability and evidence of protective effects
Journal Article
Berry flavonoids and phenolics: bioavailability and evidence of protective effects
2010
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Overview
Berries contain vitamin C and are also a rich source of phytochemicals, especially anthocyanins which occur along with other classes of phenolic compounds, including ellagitannins, flavan-3-ols, procyanidins, flavonols and hydroxybenzoate derivatives. This review examines studies with both human subjects and animals on the absorption of these compounds, and their glucuronide, sulphate and methylated metabolites, into the circulatory system from the gastrointestinal tract and the evidence for their localisation within the body in organs such as the brain and eyes. The involvement of the colonic microflora in catabolising dietary flavonoids that pass from the small to the large intestine is discussed along with the potential fate and role of the resultant phenolic acids that can be produced in substantial quantities. The in vitro and in vivo bioactivities of these polyphenol metabolites and catabolites are assessed, and the current evidence for their involvement in the protective effects of dietary polyphenols, within the gastrointestinal tract and other parts of the body to which they are transported by the circulatory system, is reviewed.
Publisher
Cambridge University Press,CABI Pub
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