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CAS:83-46-5
Molecular Formula:C29H50O
Beta-Sitosterol; Phytosterol; Stigmast-5-En-3-Ol, (3β)-; β-Sitosterol; 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)
Brief Introduction
Sterols are a kind of steroids in nature. Although they are not in much content, they have high application value. Because it is solid, it is also called solid alcohol, which belongs to macromolecular alcohols. It is the main component of unsaponifiable substance in oil. According to the different sources, sterols can be divided into three categories, namely animal sterols, phytosterols and bacteriosterols. Phytosterol is considered as a mild free radical scavenger, which explains the positive role of phytosterol in maintaining cell membrane stability, inhibiting inflammation, antibacterial, preventing atherosclerosis and anti-cancer. Phytosterol is widely used in medicine, food, cosmetics, feed and other industries. Phytosterol has a wide range of biological functions in medicine and food science. In animal production, scientific use of phytosterol can promote animal growth, improve the health of the body and improve the quality of animal products, which has a positive effect on reducing the cost of breeding and improving economic benefits. As a functional additive, phytosterol has a broad application prospect in feed industry. At present, the mechanism, effective dosage form and dosage, absorption efficiency and application technology of phytosterol in improving animal growth and health have not been fully clarified, and a lot of in-depth research is needed to lay a foundation for its scientific and reasonable application.
CAS:1229194-11-9
Molecular Formula:C31H40ClN7O8S2
Edoxaban; Lixiana; Savaysa; Edoxaban Tosylate Hydrate
Brief Introduction
Edoxaban is an oral tablet of selective coagulation factor Xa inhibitor for the prevention and treatment of deep venous thrombosis and pulmonary embolism. It is used to reduce the risk of stroke and systemic embolism in patients with non valvular atrial fibrillation (NVAF). At present, it has three specifications: 60mg, 30mg and 15mg.
CAS:147403-03-0
Molecular Formula:C25H20N4O5
Azilva; Azilsartane; 1H-Benzimidazole-7-Carboxylic Acid,1-[[2'-(2,5-Dihydro-5-Oxo-1,2,4-Oxadiazol-3-Yl)[1,1'-Biphenyl]-4-Yl]Methyl]-2-Ethoxy; 2-Ethoxy-3-[[4-[2-(5-Oxo-2H-1,2,4-Oxadiazol-3-Yl)Phenyl]Phenyl]Methyl]Benzimidazole-4-Carboxylic Acid; 2-Ethoxy-1-[[2'-(4,5-Dihydro-5-Oxo-1,2,4-Oxadiazol-3-Yl)Biphenyl-4-Yl]Methyl]Benzimidazole-7-Carboxylic Acid
Brief Introduction
Azilsartan is an angiotensin II receptor antagonist drug under development for the treatment of hypertension. It is mostly used for the treatment of hypertension. It is also the only angiotensin II receptor antagonist (sartan) drug in late clinical stage.
CAS:58-61-7
Molecular Formula:C10H13N5O4
Adenocard; Adenoscan; Adenine Riboside
Brief Introduction
Adenosine is an active substance with nucleosides and purines as its basic structure, which is mediated by adenine β- A nucleoside formed by binding D-ribose with glycosidic bond. It is widely distributed in all types of cells. In nucleic acids, it can be either free or combined. Adenosine phosphates such as ATP are important energy carriers in biochemical reactions.
CAS:58-63-9
Molecular Formula:C10H12N4O5
6-Oxopurine Riboside; Nosine; Atorel; beta-D-Ribofuranoside, Hypoxanthine-9; beta-Inosine; HXR; Hypoxanthine D-Riboside; Hypoxanthine, 9-beta-D-Ribofuranosyl-; Hypoxanthined-Riboside; Hypoxanthinenucleoside; Ino; 6-Oxy-Purine Riboside
Brief Introduction
Used as coenzyme drugs. Inosine is a component of ATP, coenzyme A, ribonucleic acid and deoxyribonucleic acid in the body, which participates in the material metabolism and energy metabolism of the body. It can increase the level of ATP in the body. It can be transformed into many nucleotides and participate in the synthesis of proteins. Inosine has good permeability to cell membrane. It can directly enter into cells, turn into nucleotides, and then turn into ATP to participate in metabolism. It can promote the recovery of liver cells, prevent fatty liver, improve the activity of various enzymes, and stimulate the body to produce antibodies. Inosine can be used as an auxiliary hepatoprotective drug, and can also be used to rescue hepatic coma.
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