Customization: | Available |
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CAS No.: | 83-46-5 |
Formula: | C29h50o |
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Product name: beta-Sitosterol
CAS No.: 83-46-5
Other Names: B-SITOSTEROL;5-STIGMASTEN-3BETA-OL;22,23-DIHYDROSTIMASTEROL;22,23-DIHYDROSTIGMASTEROL;24-ALPHA-ETHYLCHOLESTEROL;24BETA-ETHYLCHOLESTEROL;5-CHOLESTEN-24-BETA-ETHYL-3-BETA-OL;(3)-BETA-SITOSTEROL(2)
MF: C29H50O
EINECS No.: 201-480-6
Place of Origin:Nanjing, China
Type:Syntheses Material Intermediates
Purity:98%min
Appearance:white to almost white crystalline powder
CAS: 83-46-5
Color:White Powder
Sample:Freely Offered
Shelf life:2 Yerrs
Storage:Cool Dry Place
β-sitosterol is one of the phytosterols. It belongs to the tetracyclic tri-folding compound. It is widely found in various plant oils, nuts and other plant seeds in nature, as well as in some botanicals. β-sitosterol is widely used in the cosmetic industry due to its unique biological and physical and chemical properties.
1.Beta-Sitosterol Powder, Beta Sitosterol Powder has a choleretic effect, increase bile secretion and promote bile excretion, can reduce organic and impurity in bile.
2.Beta-Sitosterol Powder, Beta Sitosterol Powder can increase the excretion of chloride. The diuretic effect is mainly outside of the kidney, to the kidney function is very weak.
3.Beta-Sitosterol Powder, Beta Sitosterol Powder has hemostasis effect, can accelerate the process of blood coagulation, increase blood levels of thrombin increased platelet count.
4.Beta-Sitosterol Powder, Beta Sitosterol Powder has lowering blood pressure and blood glucose effect, the fermentation preparation of corn stigma has a very significant reduction in blood sugar to rabbit.
Food Ingredient/Supplement: A major emerging application linked to the discovery of the hypo-cholesterolemiant effect of phytosterols.
Cosmetics: A presence of phytosterols in cosmetic compositions for more than 20 years. A more recent trend for the development of phytosterols as specific cosmetic actives.
Such as Emollient,Skin Feel, Emulsifier
Pharmaceutical Raw Material :
An application developed in the 1970s, based on the shift from saponins to phytosterols as bulk materials for steroid synthesis with initial work focused on chemically degraded stigmasterols and more recent developments concerning other phytosterols degraded by fermentation.