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polyprenol/inflammation

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NEW HEPATIC AND NEUROLOGICAL CLINICAL IMPLICATIONS OF LONG-CHAIN PLANT POLYPRENOLS ACTING ON THE MAMMALIAN ISOPRENOID PATHWAY.

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The mammalian isoprenoid synthesis pathway (also known as the mevalonate pathway) is fundamental to the metabolism and health of organisms, with products such as cholesterol (sterol isoprenoid), ubiquinone (coenzyme Q) and dolichol (non-sterol isoprenoids) having great importance to mammalian

Isolation and identification of an anti-inflammatory principle from Capparis spinosa.

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The homologous polyprenols cappaprenol-12 (1), cappaprenol-13 (2) and cappaprenol-14 (3) with 12, 13 and 14 isoprene units, respectively, could be isolated by preparative HPLC from alcoholic extracts of Capparis spinosa. Testing 2 for its anti-inflammatory activity an inhibition of the

Plant polyisoprenoids and control of cholesterol level.

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The ability of plant polyisoprenoids (polyprenols and polyprenyl phosphates) to diminish the levels of serum cholesterol affecting its biosynthetic pathway are highlighted here. Possible mechanism of such process is discussed. It is also noted that polyisoprenoids can prevent toxic injuries of the

16-Hydroxy-Lycopersene, a Polyisoprenoid Alcohol Isolated from Tournefortia hirsutissima, Inhibits Nitric Oxide Production in RAW 264.7 Cells and Induces Apoptosis in Hep3B Cells.

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Three polyisoprenoid alcohols were isolated from the leaves of Tournefortia hirsutissima by a bioassay-guided phytochemical investigation. The compounds were identified as 16-hydroxy-lycopersene (Compound 1), (Z8,E3,ω)-dodecaprenol (Compound 2) and
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