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fagopyrum/triglyceride

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Buckwheat powder or protein has been shown to decrease the total serum cholesterol level in non-diabetic mice or rats. However, the lipid-lowering effect of buckwheat bran extract (BBE) in diabetic mice has not been fully elucidated. KK-A(y) mice that received six-week treatment with BBE showed
Hypertension, hyperlipidemia, and diabetes are important precursors of cardiovascular disease. Here, we evaluated the antihypertensive, antihyperlipidemic, and antidiabetic potential of five types of sprouts in fructose-loaded spontaneously hypertensive rats (SHRs). Powdered sprouts (PSs) were

Impact of products from ground buckwheat added to balanced diets on biochemical blood markers in Wistar rats.

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BACKGROUND It is believed that buckwheat can be used as a functional food ingredient in the prevention and treatment of diet-related diseases, e.g., atherosclerosis, hypertension, obesity, constipation and cancers. The use of buckwheat protein preparations in the diet for experimental animals had a
Buckwheat grain has well-balanced nutritional value, whereas its digestibility is relatively low. This review summarizes recent advances in studies on the hypolipidemic activity of buckwheat. The most remarkable function is a powerful hypocholesterolemic activity of buckwheat protein in rats, which

Effect of buckwheat sprouts and groats on the antioxidant potential of blood and caecal parameters in rats.

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The aim of this study was to investigate whether dietary buckwheat sprouts, cultivated without or with light exposure, exerted different effects on the lower gut, antioxidant status, and lipoprotein profile in rats. For 4 weeks, rats were given a diet containing 30 % expanded buckwheat seeds or 5 %
BACKGROUND The potential of fermented buckwheat as a feed additive was studied to increase l-carnitine and γ-aminobutyric acid (GABA) in designer eggs. Buckwheat contains high levels of lysine, methionine and glutamate, which are precursors for the synthesis of l-carnitine and GABA. Rhizopus

Buckwheat and CVD Risk Markers: A Systematic Review and Meta-Analysis.

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The effects of buckwheat intake on cardiovascular diseases (CVDs) have not been systematically investigated. The aim of the present study was to comprehensively summarize studies in humans and animals, evaluating the impact of buckwheat consumption on CVD risk markers and to conduct a meta-analysis

Oats and buckwheat intakes and cardiovascular disease risk factors in an ethnic minority of China.

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The relationship of oats and buckwheat intake to cardiovascular disease risk factors was studied in 850 Yi people, an ethnic minority in southwest China. Blood pressure was measured on 3 consecutive days. Serum total cholesterol, high-density-lipoprotein (HDL) cholesterol, and triglycerides were

Aqua-culture improved buckwheat sprouts with more abundant precious nutrients and hypolipidemic activity.

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Nutritional values of buckwheat reach maximum on day 8 sprouting by solid-phase cultivation (BSSC). The precious nutrients surveyed included linolenic acid, total polyphenolics, rutin, quercetin, l-ascorbic acid and gamma-aminobutyric acid. To investigate whether a change of cultivation method could

Optimization of bioactive compounds in buckwheat sprouts and their effect on blood cholesterol in hamsters.

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Nutrient levels in buckwheats that were maximized in day 8 sprouts (D8SP) included total phenolics, quercetin, and l-ascorbic acid, whereas those of oxalic, malic, tartaric, and citric acids, rutin, and gamma-aminobutyric acid (GABA) were found to reach maximum levels on day 10. Ethanolic extract of
Buckwheat-resistant starch (BRS) has shown to be a nutrient capable of lowering cholesterol and reducing obesity. In this study, the regulatory effects of tartary buckwheat starch on blood lipid level and gut microbiota (Lactobacillus, Bifidobacterium, Enterococcus, and Escherichia coli) in mice fed

The Inhibitory Effect of Tartary Buckwheat Extracts on Adipogenesis and Inflammatory Response.

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Tartary buckwheat (Fagopyrum tataricum) has been established globally as a nutritionally important food item, particularly owing to high levels of bioactive compounds such as rutin. This study investigated the effect of tartary buckwheat extracts (TBEs) on adipogenesis and inflammatory response in
To investigate the therapeutic effects of the black buckwheat leaf (BBL) in type 2 diabetes mellitus mice and its effects on pancreas and spleen.

METHODS
Forty male C57 / B16 mice (SPF) were randomly divided into normal control (NC) group (n=10) and
Polyphenol extracts derived from gastrointestinal digestates of buckwheat (Fagopyrum Mill) were studied for their intestinal transport and lipid-lowering effects in Caco 2/HepG2 coculture models. The relative amounts of all phenolic compounds throughout the digestion and intestinal absorption
This study was designed to investigate the protective effects of d-Chiro-Inositol (DCI) enriched tartary buckwheat extract (DTBE) against high fructose (HF) diet-induced hyperglycemia and liver injury in mice. HPLC analysis revealed that the content of DCI present in purified DTBE was 34.06%. Mice
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