Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern

Phytosterol consumption reduces the absorption of dietary cholesterol and can alter the tissue fatty acid composition. The effects of manipulating sterol and phospholipid fatty acid profile by increasing levels of phytosterols (1000 and 4000. mg/kg diet) have been investigated in young Sprague-Dawle...

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Main Authors: Alhazzaa, Ramez, Oen, J., Sinclair, A.
Format: Journal Article
Published: 2013
Online Access:http://hdl.handle.net/20.500.11937/36515
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author Alhazzaa, Ramez
Oen, J.
Sinclair, A.
author_facet Alhazzaa, Ramez
Oen, J.
Sinclair, A.
author_sort Alhazzaa, Ramez
building Curtin Institutional Repository
collection Online Access
description Phytosterol consumption reduces the absorption of dietary cholesterol and can alter the tissue fatty acid composition. The effects of manipulating sterol and phospholipid fatty acid profile by increasing levels of phytosterols (1000 and 4000. mg/kg diet) have been investigated in young Sprague-Dawley rats. Cholesterol levels decreased significantly only in liver, heart and skin. Significant increased levels of phytosterols were detected in all ten tissues analysed, with levels of campesterol in general being greater than those of ß-sitosterol. The level of phytosterol incorporation ranged widely in tissues, more than doubling in heart, lung, spleen and erythrocytes to no significant increases in brain. In heart, kidney, spleen and lung there were dose dependent increases in phytosterol levels. The phospholipid fatty acid profile showed some small, but significant changes, but these were not consistent between tissues or for fatty acid classes. Dietary phytosterols accumulated differently in tissues and affected cholesterol levels and phospholipid fatty acid composition in a tissue-specific manner. © 2013 Elsevier Ltd.
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spelling curtin-20.500.11937-365152017-09-13T15:30:00Z Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern Alhazzaa, Ramez Oen, J. Sinclair, A. Phytosterol consumption reduces the absorption of dietary cholesterol and can alter the tissue fatty acid composition. The effects of manipulating sterol and phospholipid fatty acid profile by increasing levels of phytosterols (1000 and 4000. mg/kg diet) have been investigated in young Sprague-Dawley rats. Cholesterol levels decreased significantly only in liver, heart and skin. Significant increased levels of phytosterols were detected in all ten tissues analysed, with levels of campesterol in general being greater than those of ß-sitosterol. The level of phytosterol incorporation ranged widely in tissues, more than doubling in heart, lung, spleen and erythrocytes to no significant increases in brain. In heart, kidney, spleen and lung there were dose dependent increases in phytosterol levels. The phospholipid fatty acid profile showed some small, but significant changes, but these were not consistent between tissues or for fatty acid classes. Dietary phytosterols accumulated differently in tissues and affected cholesterol levels and phospholipid fatty acid composition in a tissue-specific manner. © 2013 Elsevier Ltd. 2013 Journal Article http://hdl.handle.net/20.500.11937/36515 10.1016/j.jff.2013.01.030 restricted
spellingShingle Alhazzaa, Ramez
Oen, J.
Sinclair, A.
Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title_full Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title_fullStr Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title_full_unstemmed Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title_short Dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
title_sort dietary phytosterols modify the sterols and fatty acid profile in a tissue-specific pattern
url http://hdl.handle.net/20.500.11937/36515