9-(1H-imidazol-5-yl)-2-(1-isopropyl-1H-1,2,4-triazol-5-yl)-5,6-dihydrobenzo[f]imidazo[1,2-d][1,4]oxazepine
- Product Code: 54562
CAS:
1282512-76-8
Molecular Weight: | 361.4 g./mol | Molecular Formula: | C₁₉H₁₉N₇O |
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Density: | Storage Condition: | 2-8℃ |
Product Description:
This compound is primarily utilized in the field of medicinal chemistry, particularly in the development of targeted therapies. It exhibits potential as a kinase inhibitor, making it valuable in the treatment of various cancers where abnormal kinase activity is a contributing factor. Its unique structure allows it to selectively bind to specific kinase proteins, thereby inhibiting their function and slowing down the progression of cancer cells.
Additionally, it is being explored for its application in autoimmune diseases. By modulating kinase pathways involved in immune responses, this compound could help in reducing inflammation and managing conditions such as rheumatoid arthritis and lupus. Its ability to interfere with specific signaling pathways makes it a promising candidate for developing novel immunosuppressive drugs.
Research is also ongoing to evaluate its efficacy in neurological disorders. Early studies suggest that it may have neuroprotective properties, potentially offering therapeutic benefits in diseases like Alzheimer's and Parkinson's. By targeting kinases involved in neurodegenerative processes, it could help in slowing disease progression and improving patient outcomes.
Overall, this compound represents a versatile tool in drug discovery, with applications spanning oncology, immunology, and neurology, offering hope for more effective and targeted treatments in these fields.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.200 | 10-20 days | $373.76 |
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9-(1H-imidazol-5-yl)-2-(1-isopropyl-1H-1,2,4-triazol-5-yl)-5,6-dihydrobenzo[f]imidazo[1,2-d][1,4]oxazepine
This compound is primarily utilized in the field of medicinal chemistry, particularly in the development of targeted therapies. It exhibits potential as a kinase inhibitor, making it valuable in the treatment of various cancers where abnormal kinase activity is a contributing factor. Its unique structure allows it to selectively bind to specific kinase proteins, thereby inhibiting their function and slowing down the progression of cancer cells.
Additionally, it is being explored for its application in autoimmune diseases. By modulating kinase pathways involved in immune responses, this compound could help in reducing inflammation and managing conditions such as rheumatoid arthritis and lupus. Its ability to interfere with specific signaling pathways makes it a promising candidate for developing novel immunosuppressive drugs.
Research is also ongoing to evaluate its efficacy in neurological disorders. Early studies suggest that it may have neuroprotective properties, potentially offering therapeutic benefits in diseases like Alzheimer's and Parkinson's. By targeting kinases involved in neurodegenerative processes, it could help in slowing disease progression and improving patient outcomes.
Overall, this compound represents a versatile tool in drug discovery, with applications spanning oncology, immunology, and neurology, offering hope for more effective and targeted treatments in these fields.
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