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trigonella foenum-graecum/гојазност

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Effect of the herbal medicines in obesity and metabolic syndrome: A systematic review and meta-analysis of clinical trials.

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Obesity is a medical situation in which excess body fat has gathered because of imbalance between energy intake and energy expenditure. In spite of the fact that the variety of studies are available for obesity treatment and management, its "globesity" still remains a big challenge all

Alternative therapies: Part I. Depression, diabetes, obesity.

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Natural supplements are widely used in the United States and, while claims of their therapeutic effects abound, medical research does not always support their effectiveness. St. John's wort acts as a weak selective serotonin reuptake inhibitor with fewer side effects. S-Adenosylmethionine (SAMe) has

Trigonella foenum-graecum seeds lowers postprandial blood glucose in overweight and obese individuals.

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This study determined the effects of fenugreek on postprandial plasma glucose (PPG) and satiety among overweight and obese individuals. Fourteen subjects were studied in the morning after overnight fasts on four separate occasions. Glycaemic responses elicited by 50 g carbohydrate portions of white

Efficacy of Fenugreek-based bionanocomposite on renal dysfunction and endogenous intoxication in high-calorie diet-induced obesity rat model-comparative study.

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UNASSIGNED Worldwide obesity spread is a global health problem and needs to be further studied. Co-morbidities of obesity include insulin resistance, diabetes mellitus type 2, and dyslipidemia, which are the most frequent contributing factors for metabolic syndrome (MetS), as well as non-alcoholic

Effects of fenugreek seed extract in obese mice fed a high-fat diet.

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It was found that fenugreek seed extract reduced the body weight gain induced by a high-fat diet in obese mice. The extract decreased plasma triglyceride gain induced by oil administration. The major component of the extract, 4-hydroxyisoleucine, also decreased plasma triglyceride gain.

STATUS OF GLUTATHIONE-DEPENDENT LINK OF BLOOD ANTIOXIDANT SYSTEM UNDER APPLICATION OF FENUGREEK SEED POWDER IN ANIMALS WITH EXPERIMENTAL OBESITY.

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The content of reduced glutathione (GSH) and activity of glutathione-dependent enzymes: glutathione peroxidase (GP) and glutathione-S-transferase (GT) in blood serum of rats in the diet supplemented of fine powder seeds Trigonella foenum graecum L. on the background of experimental obesity. It was

Fenugreek Seed Extract Prevents Fat Deposition in Monosodium Glutamate (MSG)-Obese Rats.

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OBJECTIVE To evaluate the preventive effects of an aqueous extract of Trigonella foenum-graecum seeds (AqE-TFG) on fat deposition and dyslipidemia in monosodium glutamate (MSG)-obese rats. METHODS Neonatal male Wistar rats were injected with MSG (4 g/kg b. w., subcutaneously) from day 2 to 14 after

Influence of a Novel Food-Grade Formulation of Red Chili Extract ( Capsicum annum) on Overweight Subjects: Randomized, Double-Blinded, Placebo-Controlled Study

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Capsaicinoids from pungent red chilies (Capsicum annum and Capsicum frutescens) have received significant attention as a natural supplement for the management of obesity. However, the consumption of chili extract at physiologically relevant dosage of capsaicinoids is a challenge owing

In vitro intestinal glucose uptake is inhibited by galactomannan from Canadian fenugreek seed (Trigonella foenum graecum L) in genetically lean and obese rats.

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Galactomannan, a soluble fiber, has been reported to reduce postprandial blood glucose response. Using this fiber, extracted from Canadian-grown fenugreek seeds (Trigonella foenum graecum L), we conducted an in vitro study to determine if galactomannan affects intestinal glucose uptake in

Alleviation of hepatic steatosis accompanied by modulation of plasma and liver TNF-alpha levels by Trigonella foenum graecum (fenugreek) seeds in Zucker obese (fa/fa) rats.

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OBJECTIVE Oral supplements of fenugreek (Trigonella foenum graecum) seeds (Fen) have been shown to treat glucose and lipid homeostasis in several metabolic disorders; however, its ability to alleviate obesity-associated pathologies is not known. The main objective of this study was to evaluate the

Anti-metabolic syndrome and immunostimulant activities of Egyptian fenugreek seeds in diabetic/obese and immunosuppressive rat models.

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Preliminary trials have suggested possible hypoglycaemic, hypolipidaemic and immunomodulatory properties of the fenugreek plant. Here, we evaluated and compared the efficacy of Egyptian fenugreek seed powder (FSP, 0·5 and 1·0 g/kg body weight) in alleviating the experimentally induced metabolic

Effect of fenugreek fiber on satiety, blood glucose and insulin response and energy intake in obese subjects.

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Eighteen healthy obese subjects participated in a single blind, randomized, crossover study of three test breakfasts, containing 0 g (control), 4 g or 8 g of isolated fenugreek fiber. Subjects recorded ratings of hunger, satiety, fullness and prospective food consumption using visual analog scales

4-Hydroxyisoleucine from Fenugreek (Trigonella foenum-graecum): Effects on Insulin Resistance Associated with Obesity.

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Obesity and insulin resistance (IR) are interdependent multifactorial processes that cannot be understood separately. Obesity leads to systemic inflammation and increased levels of free fatty acids that provoke IR and lipotoxicity. At the same time, IR exacerbates adipose cell dysfunction, resulting

Anti-obesity action of INDUS810, a natural compound from Trigonella foenum-graecum: AMPK-dependent lipolysis effect in adipocytes.

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OBJECTIVE We investigated the anti-obesity effect and underlying action mechanism of INDUS810 isolated from Trigonella foenum-graecum L. (Fabaceae), an annual herb commonly known as fenugreek and reported to have hypocholesterolemic, antidiabetic, anticancer and gastroprotective

Fenugreek attenuates obesity-induced inflammation and improves insulin resistance through downregulation of iRhom2/TACE

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Aims: We previously reported that fenugreek-derived 4-hydroxyisoleucine ameliorates insulin resistance via regulation of TNF-α converting enzyme (TACE) expression. In the present study, we further investigate the effects and mechanisms of
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