
CAS 1226895-15-3
:FLLL32
Description:
FLLL32, identified by its CAS number 1226895-15-3, is a chemical compound that has garnered attention in the field of medicinal chemistry, particularly for its role as a selective inhibitor of certain protein kinases. This compound is characterized by its ability to modulate specific signaling pathways, which can have implications in cancer research and treatment. FLLL32 is known to exhibit a relatively high degree of selectivity, making it a valuable tool for studying the biological functions of the targeted kinases. Its molecular structure typically includes functional groups that contribute to its binding affinity and specificity. Additionally, FLLL32's pharmacokinetic properties, such as solubility and stability, are crucial for its potential therapeutic applications. As research continues, the understanding of FLLL32's mechanism of action and its effects on cellular processes will be essential for developing targeted therapies in oncology and other diseases where kinase activity is dysregulated.
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Found 5 products.
FLLL32
CAS:<p>FLLL32 is an effective JAK2/STAT3 inhibitor (IC50 of <5 μM).</p>Formula:C28H32O6Purity:97% - 97.90%Color and Shape:SolidMolecular weight:464.55FLLL32
CAS:Controlled Product<p>Applications FLLL32 is a potent JAK2/STAT3 inhibitor used in the treatment of osteosarcomas, or malignant bone tumors.<br>References Yan, J. et al.: Mol. Med. Reo., 12, 498 (2015); Onimoe, G. et al.: Invest. New Drugs., 30, 916 (2012);<br></p>Formula:C28H32O6Color and Shape:NeatMolecular weight:464.55FLLL32
CAS:<p>FLLL32 is a natural compound that has antioxidant and anti-inflammatory properties. It has been shown to have significant cytotoxic effects on human osteosarcoma cells and mouse tumor cells in vitro. FLLL32 also has the ability to inhibit the activity of survivin, a protein that protects cancer cells from apoptosis. This compound can be used to treat oxidative injury caused by infectious diseases, as well as cancer.</p>Formula:C28H32O6Purity:Min. 95%Molecular weight:464.55 g/mol




