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Molecular actions of hypocholesterolaemic compounds from edible mushrooms

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Abstract

Cholesterol levels are strictly regulated to maintain its homeostasis; therefore, if it is not absorbed with the diet, the cholesterol biosynthetic pathway is enhanced and vice versa. Nowadays, the commonly prescribed therapeutic treatments for hypocholesterolemic patients are targeted toward the reduction of both cholesterol intestinal absorption and/or its endogenous biosynthesis. But, when hypercholesterolemia is still moderate the consumption of food products with cholesterol-lowering capacities is more desirable than using drugs. Marketed foods supplemented with hypocholesterolemic compounds are only inhibiting mechanisms for cholesterol absorption (i.e. phytosterols and cereal β-glucans). However, certain fungal extracts obtained from edible mushrooms might be able to modulate cholesterol levels by both strategies, pharmaceutical drugs and functional foods. In vitro and in vivo studies indicated that fungal sterols down-regulated genes involved in cholesterol homeostasis (such as Srebf2 and Nr1h4 (FXR)) and other specific mushroom extracts (β-glucans and other water-soluble compounds) also stimulated transcriptional profiles similar to simvastatin or ezetimibe (two hypocholesterolemic drugs). These and other observations suggested that the hypocholesterolemic effect of mushroom extracts could be due to transcriptional and post-transcriptional modulations besides other indirect effects.

Graphical abstract: Molecular actions of hypocholesterolaemic compounds from edible mushrooms

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Publication details

The article was received on 08 Jun 2017, accepted on 07 Nov 2017 and first published on 08 Nov 2017


Article type: Review Article
DOI: 10.1039/C7FO00835J
Citation: Food Funct., 2018, Advance Article
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    Molecular actions of hypocholesterolaemic compounds from edible mushrooms

    A. Gil-Ramírez, D. Morales and C. Soler-Rivas, Food Funct., 2018, Advance Article , DOI: 10.1039/C7FO00835J

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