AE15622
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
20mg | 1 week | $909.00 | $636.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AE15622 |
Chemical Name: | MOEXIPRILAT HYDRATE |
CAS Number: | 103775-14-0 |
Molecular Formula: | C25H30N2O7 |
Molecular Weight: | 470.5149 |
MDL Number: | MFCD08063675 |
SMILES: | COc1cc2C[C@@H](C(=O)O)N(Cc2cc1OC)C(=O)[C@@H](N[C@H](C(=O)O)CCc1ccccc1)C |
Moexiprilat Hydrate is a valuable compound in chemical synthesis, particularly in the field of pharmaceutical research and development. As an active metabolite of the antihypertensive drug moexipril, Moexiprilat Hydrate plays a crucial role in the synthesis of new drug candidates targeting cardiovascular diseases. Its ability to inhibit angiotensin-converting enzyme (ACE) makes it a key component in the creation of novel medications for the treatment of hypertension and related conditions.In organic synthesis, Moexiprilat Hydrate can be utilized as a building block for the preparation of various drug molecules through the modification of its chemical structure. Its unique reactivity and specificity make it a preferred choice for chemists seeking to design potent ACE inhibitors or explore new therapeutic avenues in cardiovascular medicine. By incorporating Moexiprilat Hydrate into the synthetic route, researchers can access diverse chemical pathways and optimize the bioactivity of the final drug product.Furthermore, Moexiprilat Hydrate's role in chemical synthesis extends beyond pharmaceuticals, with potential applications in the discovery of bioactive compounds for other disease targets. Its structural features and pharmacological properties make it a versatile intermediate for creating drug libraries and exploring structure-activity relationships in medicinal chemistry. Overall, Moexiprilat Hydrate is a valuable tool for chemists and researchers striving to advance the field of drug discovery through innovative synthesis strategies and molecular design approaches.