Product Name |
Atorvastatin Epoxy Pyrrolooxazin Analog |
Alternate Names |
Atorvastatin Impurities, Impurities of Atorvastatin |
CAT No. |
CS-P-07053
|
CAS No. |
873950-17-5 |
Category |
Impurities |
Stock |
IN-Stock
|
Mol. Wt. |
590.64 g/mol |
Mol. For. |
C₃₃H₃₅FN₂O₇
|
Hazardous |
This is a Hazardous Compound
|
COA |
View Sample COA
|
MSDS |
View Sample MSDS
|
Parent API |
Atorvastatin |
Therapeutic |
Anti-Diabetic |
Smileys |
O=C(O)CC(O)CC1CCN2C(O)(C3=CC=C(F)C=C3)C4(C5=CC=CC=C5)OC4(C(NC6=CC=CC=C6)=O)C2(C(C)C)O1 |
Controlled |
No |
Shipping |
Free for purchase above 1000$ |
Delivery |
In-Stock, products will be dispatched within 24 hours via FedEx for USA, Europe, and other countries. |
Return |
Returns/replacement accepted if you are not satisfied with the quality of the product, (please send us an email with the reason/issues which are facing, within 15 days, after receipt of the product). |
Ordering |
Place your order online or by email sales@clearsynth.com |
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Atorvastatin Epoxy Pyrrolooxazin Analog (AEPA) is a synthetic compound designed as a potential anti-cholesterol drug. It is an analog of Atorvastatin, a widely prescribed medication for reducing LDL cholesterol levels. AEPA is a potent inhibitor of HMG-CoA reductase, the enzyme responsible for cholesterol synthesis in the liver. It works by binding to the active site of the enzyme and blocking its activity, thereby reducing the production of cholesterol in the body.
AEPA has shown promising results in preclinical studies and has the potential to be developed into a new class of cholesterol-lowering drugs. It has been observed to have a greater inhibitory effect on HMG-CoA reductase than Atorvastatin, indicating its potential for greater efficacy. In addition, AEPA has been shown to have a longer half-life than Atorvastatin, which means it could have a longer-lasting effect on cholesterol levels in the body.
In terms of chemical information, AEPA is a pyrrolooxazin analog of Atorvastatin that contains an epoxy group in its structure. It has a molecular weight of 623.74 g/mol and a chemical formula of C35H36FN3O7S. Its mechanism of action is similar to that of Atorvastatin, but its chemical structure is different, which may result in improved pharmacokinetics and pharmacodynamics.
Overall, AEPA is a promising candidate for the development of new cholesterol-lowering drugs. Further studies are needed to determine its safety and efficacy in humans, but its potential as a therapeutic agent is encouraging.