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epirosmanol/salvia

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ArticoleStudii cliniceBrevete
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Determination of phenolic antioxidant compounds produced by calli and cell suspensions of sage (Salvia officinalis L.).

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Sage (Salvia officinalis L.) calli were established by culturing internodal segments, excised from aseptic seedlings, on MS basal medium gellied with agar and supplemented with 0.05 mg/L dichlorophenoxyacetic acid (2,4-D) in presence of benzyladenine (BA) or zeatin (ZEA) or kinetin (KIN), at 1.5

Apianane terpenoids from Salvia officinalis.

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Three apianane terpenoids, rel-(5S, 6S, 7S, 10R, 12S, 13R)-7-hydroxyapiana-8,14-diene-11,16-dion-(22,6)-olide, rel-(5S, 6S, 7R, 10R, 12S, 13R)-7-hydroxyapiana-8,14-diene-11,16-dion-(22,6)-olide and rel-(5S, 6S, 7S, 10R, 12R, 13S)-7-hydroxyapiana-8,14-diene-11,16-dion-(22,6)-olide were isolated from

Acetylcholine esterase inhibitors and melanin synthesis inhibitors from Salvia officinalis.

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BACKGROUND Salvia officinalis is a traditionally used herb with a wide range of medicinal applications. Many phytoconstituents have been isolated from S. officinalis, mainly phenolic diterpenes, which possess many biological activities. OBJECTIVE This study aimed to evaluate the ability of the

Activation of the nuclear receptor PPARγ by metabolites isolated from sage (Salvia officinalis L.).

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BACKGROUND Salvia officinalis has been used as a traditional remedy against diabetes in many countries and its glucose-lowering effects have been demonstrated in animal studies. The active compounds and their possible mode of action are still unknown although it has been suggested that diterpenes
Nuclear factor E2-related factor 2 (Nrf2) is a transcription factor known to activate cytoprotective genes which may be useful in the treatment of neurodegenerative disease. In order to better understand the structure activity relationship of phenolic diterpenes from Salvia officinalis L., we
A new abietane diterpenoid, 12-O-methyl carnosol (2), was isolated from the leaves of sage (Salvia officinalis L.), together with 11 abietane diterpenoids, 3 apianane terpenoids, 1 anthraquinone, and 8 flavonoids. Antioxidant activity of these compounds along with 4 flavonoids isolated from thyme
The known diterpenes rosmanol (3), rosmaquinone (4), 7-methoxyrosmanol (5), 7-ethoxyrosmanol (6), galdosol (7), and epirosmanol (8) have been obtained by partial synthesis from carnosol (2), an abundant natural product present in Salvia species. The physical and spectroscopic data of these
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