Literature DB >> 16302759

Phytosterol composition of nuts and seeds commonly consumed in the United States.

Katherine M Phillips1, David M Ruggio, Mehdi Ashraf-Khorassani.   

Abstract

Phytosterols were quantified in nuts and seeds commonly consumed in the United States. Total lipid extracts were subjected to acid hydrolysis and then alkaline saponfication, and free sterols were analyzed as trimethylsilyl derivatives by capillary GC-FID and GC-MS. Delta5-Avenasterol was quantified after alkaline saponification plus direct analysis of the glucoside. Sesame seed and wheat germ had the highest total phytosterol content (400-413 mg/100 g) and Brazil nuts the lowest (95 mg/100 g). Of the products typically consumed as snack foods, pistachio and sunflower kernel were richest in phytosterols (270-289 mg/100 g). beta-Sitosterol, Delta5-avenasterol, and campesterol were predominant. Campestanol ranged from 1.0 to 12.7 mg/100 g. Only 13 mg/100 g beta-sitosterol was found in pumpkin seed kernel, although total sterol content was high (265 mg/100 g). Phytosterol concentrations were greater than reported in existing food composition databases, probably due to the inclusion of steryl glycosides, which represent a significant portion of total sterols in nuts and seeds.

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Year:  2005        PMID: 16302759     DOI: 10.1021/jf051505h

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  33 in total

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Journal:  Br J Nutr       Date:  2019-03-20       Impact factor: 3.718

2.  Development of a cell-based, high-throughput screening assay for cholesterol efflux using a fluorescent mimic of cholesterol.

Authors:  Jun Zhang; Sutang Cai; Blake R Peterson; Penny M Kris-Etherton; John P Vanden Heuvel
Journal:  Assay Drug Dev Technol       Date:  2010-11-04       Impact factor: 1.738

3.  Comparison of Enzymatic Hydrolysis and Acid Hydrolysis of Sterol Glycosides from Foods Rich in Δ(7)-Sterols.

Authors:  Linda H Münger; Sabrina Jutzi; Anna-Maija Lampi; Laura Nyström
Journal:  Lipids       Date:  2015-03-11       Impact factor: 1.880

4.  Variations in dietary intake and plasma concentrations of plant sterols across plant-based diets among North American adults.

Authors:  Karen Jaceldo-Siegl; Dieter Lütjohann; Rawiwan Sirirat; Andrew Mashchak; Gary E Fraser; Ella Haddad
Journal:  Mol Nutr Food Res       Date:  2017-03-20       Impact factor: 5.914

5.  Alyssum homolocarpum seeds: phytochemical analysis and effects of the seed oil on neural stem cell proliferation and differentiation.

Authors:  Azadeh Hamedi; Amir Ghanbari; Razieh Razavipour; Vahid Saeidi; Mohammad M Zarshenas; Maryam Sohrabpour; Hassan Azari
Journal:  J Nat Med       Date:  2015-04-10       Impact factor: 2.343

Review 6.  The Lipid-lowering Effects and Associated Mechanisms of Dietary Phytosterol Supplementation.

Authors:  Jerad H Dumolt; Todd C Rideout
Journal:  Curr Pharm Des       Date:  2017       Impact factor: 3.116

7.  Phytosterol-deficient and high-phytosterol diets developed for controlled feeding studies.

Authors:  Susan B Racette; Catherine Anderson Spearie; Katherine M Phillips; Xiaobo Lin; Lina Ma; Richard E Ostlund
Journal:  J Am Diet Assoc       Date:  2009-12

8.  Phytosterol, squalene, tocopherol content and fatty acid profile of selected seeds, grains, and legumes.

Authors:  E Ryan; K Galvin; T P O'Connor; A R Maguire; N M O'Brien
Journal:  Plant Foods Hum Nutr       Date:  2007-06-27       Impact factor: 3.921

9.  The effect of pumpkin (Cucurbita pepo L) seeds and L-arginine supplementation on serum lipid concentrations in atherogenic rats.

Authors:  Abuelgassim O Abuelgassim; Showayman I A Al-showayman
Journal:  Afr J Tradit Complement Altern Med       Date:  2011-10-02

10.  The influence of industrial refining stages on the physico-chemical properties, fatty acid composition and sterol contents in hazelnut oil.

Authors:  Erman Duman; Mehmet Musa Özcan
Journal:  J Food Sci Technol       Date:  2020-02-03       Impact factor: 2.701

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