Anti-hyperlipidemic

Allicin
Catalog No: CFN90201

Allicin exerts antioxidant, bactericidal, anti-cancer, anti-inflammatory activities, it exerts an inhibitory immunomodulatory effect on intestinal epithelial cells. Allicin could significantly inhibit vascular smooth muscle cells' proliferation and migration induced by insulin, which may be related to the inhibition of the activation of ERK signal path. Allicin is beneficial in reducing blood cholesterol, triglycerides levels and systolic blood pressure in hypercholesterolemic rats, it may beneficially affect two risk factors for atherosclerosis–hyperlipidemia and hypertension.
Beta-boswellic acid
Catalog No: CFN90221

Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities. Beta-boswellic acid can significantly enhance neurite outgrowth, branching, and tubulin polymerization dynamics.
Trigonelline
Catalog No: CFN90225

Trigonelline (1-methylpyridinium-3-carboxylate), an alkaloid present in coffee and fenugreek seed, exhibits phytoestrogenic, anti-adipogenesis, and anticancer activities, it also can reduce early glucose and insulin responses. Trigonelline has inhibition of the Nrf2 transcription factor and PPAR-γ.
Crocin
Catalog No: CFN90227

Crocin is a water-soluble carotenoid pigment of saffron (Crocus sativus L.), it has been used as a spice for flavoring and coloring food preparations. Crocin has anti-inflammatory, anti-oxidative, anti-apoptotic, anti-asthma, anti-cancer, and hypolipidemic effects. Crocin improves toxic effects of diazinon via reducing lipid peroxidation and restoring altered contractile and relaxant responses in rat aorta; it also protects retinal photoreceptors against light-induced cell death. Crocin can also promote ovarian cancer HO-8910 cell apoptosis, most likely by increasing p53 and Fas/APO-1 expression, and then activating the apoptotic pathway regulated by Caspase-3.
Ganoderal A
Catalog No: CFN90306

The oxygenated sterols( 26-oxygenosterols ganoderol A, ganoderol B, ganoderal A, and ganoderic acid Y) from G. lucidum can inhibit cholesterol biosynthesis via conversion of acetate or mevalonate as a precursor of cholesterol.