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Isolation and characterization of a new hispolone derivative from antioxidant extracts of <i>Pistacia atlantica</i>

Mohamed YousfiLaboratoire des Sciences Fondamentales, Université Amar Telidji, Laghouat, BP37G 03000, Laghouat, Algeria. [email protected]Amar DjeridaneLaboratoire des Sciences Fondamentales, Université Amar Telidji, Laghouat, BP37G 03000, Laghouat, AlgeriaIsabelle BombardaUniversité Paul Cézanne (Aix-Marseille III), UMR CNRS 6171 Systèmes Chimiques Complexes, Equipe Phytochimie, Avenue Escadrille Normandie Niémen, Case 461, 13397 Marseille cedex 20 FranceChahrazed‐HamiaLaboratoire des Sciences Fondamentales, Université Amar Telidji, Laghouat, BP37G 03000, Laghouat, AlgeriaBernard DuhemMuseum National d'Histoire Naturelle, Laboratoire de Cryptogamie, 12 Buffon street-F-75231 Paris cedex 05, FranceÉmile M. GaydouUniversité Paul Cézanne (Aix-Marseille III), UMR CNRS 6171 Systèmes Chimiques Complexes, Equipe Phytochimie, Avenue Escadrille Normandie Niémen, Case 461, 13397 Marseille cedex 20 France
2009en
ABI

Аннотация

The quantification of the total phenolic compounds of Pistacia atlantica showed that the different parts of the tree are rich in natural phenolic compounds. The antioxidant tests proved that the phenolic extracts have a strong antioxidant activity. The positive correlation between the Trolox equivalent antioxidant capacity (TEAC) and the amount of phenolic compounds confirms their contribution to the antioxidant activity. Among the various phenolic compounds isolated and characterized by spectroscopic methods, a new natural antioxidant 1 (methyl 5-(3,4-dihydroxyphenyl)-3-hydroxypenta-2,4-dienoate) derived from hispolone 2 has been isolated from the mushroom Inonotus hispidus growing on Pistacia atlantica. Hispolone 2 (6-(3,4-dihydroxyphenyl)-4-hydroxyhexa-3,5-dien-2-one) and hispidin 3 (6-(2-(3,4-dihydroxyphenyl)vinyl)-4-hydroxy-2H-pyran-2-one) have been also identified using spectroscopic methods, including 2D-NMR and EI-MS.

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