SHILAJIT
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Studies:
2.) EFFECTS OF SHILAJITON MEMORY, ANXIETY AND BRAINMONOAMINES IN RATS
3.) Shilajit: A Natural Phytocomplex with Potential Procognitive Activity
7.) Chemistry of shilajit, an immunomodulatory Ayurvedic rasayan
9.) Effect of Shilajit on body weight of young rats
10.) Standardization and Anti-Inflammatory Activity of Shilajit
13.) Effects of shilajit and its active constituents on learning and memory in rats
14.) Shilajit: A Humic Matter Panacea for Cancer
15.) Effect of shilajit on blood glucose and lipid profile in alloxan-induced diabetic rats

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INGREDIENTS

AFRAMOMUM MELEGUETA
1.) Grains of paradise (Aframomum melegueta) extract activates brown adipose tissue and increases whole-body energy expenditure in men
2.) Daily Ingestion of Grains of Paradise (Aframomum melegueta) Extract Increases Whole-Body Energy Expenditure and Decreases Visceral Fat in Humans
3.) Prolonged Treatment with Grains of Paradise (Aframomum melegueta) Extract Recruits Adaptive Thermogenesis and Reduces Body Fat in Humans with Low Brown Fat Activity

AMORFRUTIN B

ARCTIGENIN
1.) Arctigenin Inhibits Adipogenesis by Inducing AMPK Activation and Reduces Weight Gain in High-Fat Diet-Induced Obese Mice
2.) Arctigenin improves lipid metabolism by regulating AMP-activated protein kinase and downstream signaling pathways
3.) Arctigenin, a natural compound, activates AMP-activated protein kinase via inhibition of mitochondria complex I and ameliorates metabolic disorders in ob/ob mice

BAICALEIN
1.) Effect of Baicalein on GLUT4 Translocation in Adipocytes of Diet-Induced Obese Mice
2.) Baicalein Protects against Type 2 Diabetes via Promoting Islet β-Cell Function in Obese Diabetic Mice
3.) Baicalein, a natural product, selectively activating AMPKα2 and ameliorates metabolic disorder in diet-induced mice

BANABA
1.) Effect of Banaba (Lagerstroemia speciosa) on Metabolic Syndrome, Insulin Sensitivity, and Insulin Secretion
2.) Corosolic acid inhibits adipose tissue inflammation and ameliorates insulin resistance via AMPK activation in high-fat fed mice
3.) Antidiabetes and Anti-Obesity Activity of Lagerstroemia speciosa

BITTER MELON
1.) Metabolite Profile of Cucurbitane-Type Triterpenoids of Bitter Melon (Fruit of Momordica charantia) and Their Inhibitory Activity against Protein Tyrosine Phosphatases Relevant to Insulin Resistance
2.) Beneficial Role of Bitter Melon Supplementation in Obesity and Related Complications in Metabolic Syndrome

BLACK TEA
1.) Green tea, black tea, and epigallocatechin modify body composition, improve glucose tolerance, and differentially alter metabolic gene expression in rats fed a high-fat diet
2.) Theaflavin-3,3′-digallate, a black tea polyphenol, stimulates lipolysis associated with the induction of mitochondrial uncoupling proteins and AMPK–FoxO3A–MnSOD pathway in 3T3-L1 adipocytes
3.) Effectivity of Black Tea Polyphenol in Adipogenesis Related IGF-1 and Its Receptor Pathway Through In Silico Based Study

CAPSAICIN
1.) Capsaicin and Related Food Ingredients Reducing Body Fat Through the Activation of TRP and Brown Fat Thermogenesis
2.) The effect of Capsaicinoids or Capsinoids in red pepper on thermogenesis in healthy adults: A systematic review and meta-analysis
3.) Obesity and thermogenesis related to the consumption of caffeine, ephedrine, capsaicin, and green tea

CHLOROGENIC ACID

DAIDZEIN
1.) Reduction of body weight, liver steatosis and expression of stearoyl-CoA desaturase 1 by the isoflavone daidzein in diet-induced obesity
2.) A Review of Natural Stimulant and Non-stimulant Thermogenic Agents
3.) Flavonoids, Potential Bioactive Compounds, and Non-Shivering Thermogenesis
4.) Genistein and daidzein decrease food intake and body weight gain in mice, and alter LXR signaling in vivo and in vitro
5.) Genistein and daidzein repress adipogenic differentiation of human adipose tissue-derived mesenchymal stem cells via Wnt/β-catenin signalling or lipolysis

EGCG
1.) Effects of epigallocatechin-3-gallate on thermogenesis and mitochondrial biogenesis in brown adipose tissues of diet-induced obese mice
2.) Green tea and thermogenesis: interactions between catechin-polyphenols, caffeine and sympathetic activity
3.) Green Tea Extract Thermogenesis-Induced Weight Loss by Epigallocatechin Gallate Inhibition of Catechol-O-Methyltransferase
4.) Adipogenic commitment induced by green tea polyphenols remodel adipocytes to a thermogenic phenotype
5.) Effects of (−)-Epigallocatechin Gallate (EGCG) on Energy Expenditure and Microglia-Mediated Hypothalamic Inflammation in Mice Fed a High-Fat Diet

EVODIA RUTAECARPA
