2017SDRP Journal of Food Science & TechnologyOpen access

Wine phenolics: looking for a smooth mouthfeel

Fernanda Cosme, Alice Vilela, António M. Jordão, Sift Desk

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Abstract

Each grape variety has its own phenolic profile.However, the concentration of the phenolic compounds present in wine mainly depends on winemaking processes.Phenolic compounds influence wine sensorial characteristics, namely taste or mouth feel, bitterness, astringency and color.Humans can perceive six basic tastes: sweet, salty; sour; umami; fat-taste and bitter taste.This last basic taste is considered as a defense mechanism against the ingestion of potential poisons.Some of the genes, encoding G-protein-coupled receptors -TAS2Rs, which translate for these distinct bitter compound detectors have been identified.Different phenolic compounds activate distinguished combination of TAS2Rs.Astringency in wine is primarily driven by proanthocyanidins, soluble protein-proanthocyanidins complexes which diminish the protective salivary film and bind to the salivary pellicle; insoluble proteinproanthocyanidins complex and proanthocyanidins are rejected against salivary film and trigger astringency sensation via increasing friction.Thus, the aim of this review is to expand the knowledge about the role of wine phenolic compounds in wine sensorial properties, namely in bitterness and astringency phenomenon's.

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Each grape variety has its own phenolic profile.However, the concentration of the phenolic compounds present in wine mainly depends on winemaking processes.Phenolic compounds influence wine sensorial characteristics, namely taste or mouth feel, bitterness, astringency and color.Humans can perceive six basic tastes: sweet, salty; sour; umami; fat-taste and bitter taste.This last basic taste is considered as a defense mechanism against the ingestion of potential poisons.Some of the genes, encoding G-protein-coupled receptors -TAS2Rs, which translate for these distinct bitter compound detectors have been identified.Different phenolic compounds activate distinguished combination of TAS2Rs.Astringency in wine is primarily driven by proanthocyanidins, soluble protein-proanthocyanidins complexes which diminish the protective salivary film and bind to the salivary pellicle; insoluble proteinproanthocyanidins complex and proanthocyanidins are rejected against salivary film and trigger astringency sensation via increasing friction.Thus, the aim of this review is to expand the knowledge about the role of wine phenolic compounds in wine sensorial properties, namely in bitterness and astringency phenomenon's.

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Available abstract

Each grape variety has its own phenolic profile.However, the concentration of the phenolic compounds present in wine mainly depends on winemaking processes.Phenolic compounds influence wine sensorial characteristics, namely taste or mouth feel, bitterness, astringency and color.Humans can perceive six basic tastes: sweet, salty; sour; umami; fat-taste and bitter taste.This last basic taste is considered as a defense mechanism against the ingestion of potential poisons.Some of the genes, encoding G-protein-coupled receptors -TAS2Rs, which translate for these distinct bitter compound detectors have been identified.Different phenolic compounds activate distinguished combination of TAS2Rs.Astringency in wine is primarily driven by proanthocyanidins, soluble protein-proanthocyanidins complexes which diminish the protective salivary film and bind to the salivary pellicle; insoluble proteinproanthocyanidins complex and proanthocyanidins are rejected against salivary film and trigger astringency sensation via increasing friction.Thus, the aim of this review is to expand the knowledge about the role of wine phenolic compounds in wine sensorial properties, namely in bitterness and astringency phenomenon's.

Key concepts: Mouthfeel, Wine, Food science, Chemistry, Organic chemistry, Raw material

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