linoleic-acid and stigmastanol

linoleic-acid has been researched along with stigmastanol* in 2 studies

Other Studies

2 other study(ies) available for linoleic-acid and stigmastanol

ArticleYear
Variation in oil content, fatty acid and phytosterols profile of Onopordum acanthium L. during seed development.
    Natural product research, 2014, Volume: 28, Issue:24

    This study has determined oil, fatty acid (FA) and phytosterols content during the ripening of the Tunisian Onopordum acanthium L. seeds. In total, nine FAs and six phytosterols were identified. The main FAs were linoleic acid (0.18-8.06 mg/g of seed) followed by oleic acid (0.051-2.45 mg/g of seed), palmitic acid and stearic acid. Pentadecanoic acid was detected, for the first time, in unripe fruits and the two last stages of development were characterised by a relative abundance of erucic acid. Overall, β-sitosterol (34.5-77.79% of total sterols) was the major 4-desmethylsterols during maturation. The first episodes of growth were characterised by the best amounts of stigmasterol and campesterol, while stigmastanol and Δ7 sitosterol had quoted the semi-ripe and fully ripe fruits; however, cholesterol was absent. These findings are useful in understanding a potential new source of important natural compounds (Phytosterols and USFA) found in this fruit and when harvest should be undertaken to optimise desired FA and phytosterols content.

    Topics: Cholesterol; Fatty Acids; Fruit; Linoleic Acid; Oleic Acid; Onopordum; Phytosterols; Plant Oils; Seeds; Sitosterols; Stigmasterol; Tunisia

2014
Lack of genoprotective effect of phytosterols and conjugated linoleic acids on Caco-2 cells.
    Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association, 2009, Volume: 47, Issue:8

    Much interest has focused on the cholesterol-lowering effects of phytosterols (plant sterols) but limited data suggests they may also possess anti-carcinogenic activity. Conjugated linoleic acids (CLA), sourced from meat and dairy products of ruminant animals, has also received considerable attention as a potential anti-cancer agent. Therefore, the aims of this project were to (i) examine the effects of phytosterols and CLA on the viability and growth of human intestinal Caco-2 cells and (ii) determine their potential genoprotective (comet assay), COX-2 modulatory (ELISA) and apoptotic (Hoechst staining) activities. Caco-2 cells were supplemented with the phytosterols campesterol, beta-sitosterol, or beta-sitostanol, or a CLA mixture, or individual CLA isomers (c10t12-CLA, t9t11-CLA) for 48 h. The three phytosterols, at the highest levels tested, were found to reduce both the viability and growth of Caco-2 cells while CLA exhibited isomer-specific effects. None of the phytosterols protected against DNA damage. At a concentration of 25 microM, both c10t12-CLA and t9t11-CLA enhanced (P<0.05) oxidant-induced, but not mutagen-induced, DNA damage. Neither the phytosterols nor CLA induced apoptosis or modulated COX-2 production. In conclusion, campesterol, beta-sitosterol, beta-sitostanol, c10t12-CLA, and t9t11-CLA were not toxic to Caco-2 cells, at the lower levels tested, and did not exhibit potential anti-carcinogenic activity.

    Topics: Caco-2 Cells; Cell Membrane; Cell Survival; Cholesterol; Comet Assay; Cyclooxygenase 2; DNA Damage; Enzyme-Linked Immunosorbent Assay; Humans; Hydrogen Peroxide; L-Lactate Dehydrogenase; Linoleic Acid; Methylnitronitrosoguanidine; Mutagens; Phytosterols; Protective Agents; Sitosterols

2009