Effects of microcrystalline plant sterol suspension and a powdered plant sterol supplement on hypercholesterolemia in genetically obese Zucker rats

Author:

Summanen Jari1,Yrjönen Teijo1,Christiansen Leena2,Mervaala Eero3,Vaskonen Timo3,Lassila Markus3,Ahotupa Markku4,Yliruusi Jouko2,Karppanen Heikki3,Hiltunen Raimo1

Affiliation:

1. Division of Pharmacognosy, Department of Pharmacy, University of Helsinki, PO Box 56, FIN-00014 Helsinki, Finland

2. Division of Pharmaceutical Technology, Department of Pharmacy, University of Helsinki, PO Box 56, FIN-00014 Helsinki, Finland

3. Institute of Biomedicine, Department of Pharmacology and Toxicology, University of Helsinki, PO Box 63, FIN-00014 Helsinki, Finland

4. MCA Research Laboratory, Department of Physiology, University of Turku, Tykistökatu 6, FIN-20520 Turku, Finland

Abstract

Abstract Because dietary fat appears to be an effective vehicle for dispensing plant sterols into the diet, a special plant-sterol-containing ingredient has recently been developed. This ingredient is a plant sterol suspension in oil in which the sterols are in microcrystalline form. The objective of the present study was to analyse the cholesterol-lowering effects and safety of two different plant sterol preparations, an orally administered microcrystalline plant sterol suspension (MPS) in rapeseed oil and a powdered plant sterol supplement, in obese Zucker rats. Dietary plant sterol supplements (0.5%, w/w) were given concurrently with a high cholesterol diet (HCD, 1% cholesterol and 18% fat, w/w). No significant changes in serum triglyceride, blood glucose, serum glutamate oxaloacetic transaminase and glutamic pyruvic transaminase values or body and liver weights were observed. The powdered plant sterol supplement lowered the serum cholesterol by 25% (P< 0.05) and the MPS diet by 35% (P< 0.001) compared with HCD by the end of the 12-week experiment. Interestingly, the plant sterol supplements also produced a marked reduction in serum ubiquinone levels, suggesting a possible effect on isoprene synthesis. Unlike the powdered plant sterol, both MPS and plain rape-seed oil decreased the serum baseline diene conjugation values, suggesting that they protect against oxidative stress-induced lipid peroxidation in rats. This lipid peroxidation diminishing effect is probably due to some antioxidative components in rapeseed oil. These findings indicate that an unesterified plant sterol, such as the microcrystalline suspension in oil, effectively prevents cholesterol absorption in obese Zucker rats.

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

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