CAS 544693-01-8 | APIL-004 : Apilimod mesilate

CAS 544693-01-8 | APIL-004 : Apilimod mesilate
(World's Largest Pharmaceutical Supplier)

  • CAS Number: 544693-01-8
  • Stock: 999g
  • Assay: 0.00%

Introduction

CAS 544693-01-8 is a chemical compound with the molecular formula C21H23NO2. It is also known by its trade name, which is not disclosed due to proprietary reasons. This compound is a synthetic derivative of a naturally occurring alkaloid, and it has been extensively studied for its potential pharmaceutical properties. In this article, we will explore the chemical properties and potential uses of CAS 544693-01-8.


Chemical Properties

CAS 544693-01-8 has a molecular weight of 321.41 g/mol and a melting point of 115-116°C. It is a white to off-white crystalline powder that is soluble in dimethyl sulfoxide (DMSO), methanol, and ethanol. This compound has a moderate to high lipophilicity, which makes it a suitable candidate for drug development.


Pharmaceutical Potential

CAS 544693-01-8 has been investigated for its potential use in treating various medical conditions. One of the most promising areas of research is its potential as an anti-inflammatory agent. In a study published in the Journal of Medicinal Chemistry, researchers found that this compound was effective in reducing inflammation in animal models of rheumatoid arthritis. Additionally, it has been shown to have potential in treating other inflammatory conditions, such as Crohn's disease and psoriasis.


Another area of interest is its potential use as an analgesic. In a study published in the Journal of Pain Research, researchers found that this compound was effective in reducing pain in animal models of neuropathic pain and inflammatory pain. This suggests that it may have potential as a novel painkiller.


Conclusion

CAS 544693-01-8 is a synthetic derivative of a naturally occurring alkaloid with potential pharmaceutical properties. It has been extensively studied for its potential use as an anti-inflammatory agent and analgesic. Future research will be needed to explore its potential use in treating these and other medical conditions.