Literature DB >> 17266177

Phytosterols as anticancer compounds.

Peter G Bradford1, Atif B Awad.   

Abstract

Phytochemicals have been proposed to offer protection against a variety of chronic ailments including cardiovascular diseases, obesity, diabetes, and cancer. As for cancer protection, it has been estimated that diets rich in phytochemicals can significantly reduce cancer risk by as much as 20%. Phytosterols are specific phytochemicals that resemble cholesterol in structure but are found exclusively in plants. Phytosterols are absorbed from the diet in small but significant amounts. Epidemiological data suggest that the phytosterol content of the diet is associated with a reduction in common cancers including cancers of the colon, breast, and prostate. The means by which dietary phytosterols may be achieving these effects is becoming clearer from molecular studies with tumorigenic research models. Phytosterols affect host systems potentially enabling more robust antitumor responses, including the boosting of immune recognition of cancer, influencing hormonal dependent growth of endocrine tumors, and altering sterol biosynthesis. In addition, phytosterols have effects that directly inhibit tumor growth, including the slowing of cell cycle progression, the induction of apoptosis, and the inhibition of tumor metastasis. This review summarizes the current state of knowledge regarding the anticancer effects of phytosterols.

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Year:  2007        PMID: 17266177     DOI: 10.1002/mnfr.200600164

Source DB:  PubMed          Journal:  Mol Nutr Food Res        ISSN: 1613-4125            Impact factor:   5.914


  56 in total

1.  The effects of cholesterol and β-sitosterol on the structure of saturated diacylphosphatidylcholine bilayers.

Authors:  Jana Gallová; Daniela Uhríková; Norbert Kučerka; Slavomíra Doktorovová; Sérgio S Funari; José Teixeira; Pavol Balgavý
Journal:  Eur Biophys J       Date:  2010-10-27       Impact factor: 1.733

Review 2.  Past achievements, current status and future perspectives of studies on 3-hydroxy-3-methylglutaryl-CoA synthase (HMGS) in the mevalonate (MVA) pathway.

Authors:  Pan Liao; Hui Wang; Andréa Hemmerlin; Dinesh A Nagegowda; Thomas J Bach; Mingfu Wang; Mee-Len Chye
Journal:  Plant Cell Rep       Date:  2014-03-30       Impact factor: 4.570

3.  Solubility Limits of Cholesterol, Lanosterol, Ergosterol, Stigmasterol, and β-Sitosterol in Electroformed Lipid Vesicles.

Authors:  Mark M Stevens; Aurelia R Honerkamp-Smith; Sarah L Keller
Journal:  Soft Matter       Date:  2010-12-07       Impact factor: 3.679

4.  The evidence on trial: cholesterol lowering and cancer.

Authors:  A M Tonkin; A Forbes; S J Haas
Journal:  Heart Asia       Date:  2009-01-01

Review 5.  Boosting crop yields with plant steroids.

Authors:  Cécile Vriet; Eugenia Russinova; Christophe Reuzeau
Journal:  Plant Cell       Date:  2012-03-20       Impact factor: 11.277

6.  Determination of Fecal Sterols Following a Diet with and without Plant Sterols.

Authors:  María Cuevas-Tena; Amparo Alegría; María Jesús Lagarda
Journal:  Lipids       Date:  2017-09-06       Impact factor: 1.880

7.  β-Sitosterol: supercritical carbon dioxide extraction from sea buckthorn (Hippophae rhamnoides L.) seeds.

Authors:  Marie Sajfrtová; Ivana Licková; Martina Wimmerová; Helena Sovová; Zdenek Wimmer
Journal:  Int J Mol Sci       Date:  2010-04-22       Impact factor: 5.923

8.  Identifying and addressing safety signals in clinical trials.

Authors:  Thomas R Fleming
Journal:  N Engl J Med       Date:  2008-09-03       Impact factor: 91.245

9.  Differential modulation of membrane structure and fluctuations by plant sterols and cholesterol.

Authors:  Aden Hodzic; Michael Rappolt; Heinz Amenitsch; Peter Laggner; Georg Pabst
Journal:  Biophys J       Date:  2008-01-30       Impact factor: 4.033

10.  Controversial role of plant sterol esters in the management of hypercholesterolaemia.

Authors:  Oliver Weingärtner; Michael Böhm; Ulrich Laufs
Journal:  Eur Heart J       Date:  2009-01-21       Impact factor: 29.983

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