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PD 173074

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    PD 173074
  • PD 173074
Cat No: 13032
Biochemicals - Kinase Inhibitors
Cayman

The fibroblast growth factor receptors (FGFRs) are cell surface receptors with intrinsic tyrosine kinase activity, which is necessary for receptor activation and signal propagation. PD 173074 is a potent and selective inhibitor of FGFR tyrosine kinase ...

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Territorial Availability: Available through Bertin Technologies only in France
Synonyms:
  • N-[2-[[4-(diethylamino)butyl]amino]-6-(3,5-dimethoxyphenyl)pyrido[2,3-d]pyrimidin-7-yl]-N'-(1,1-dimethylethyl)-urea
Correlated keywords:
  • fibroblast growths factors receptors FGFRs FGFR1 tyrosine kinase activity activities activation signals propagation inhibitors inhibition inhibits autophosphorylation PDGFR c-Src cSrc c Src EGFR InsR MEK PKC FGFR2 FGFR3 FGFR4 FGFR5 angiogenesis cancers tumors self-renewal self renewal stems cells ERK1/2 ERK-1/2 ERK 1/2 PD173074
Product Overview:
The fibroblast growth factor receptors (FGFRs) are cell surface receptors with intrinsic tyrosine kinase activity, which is necessary for receptor activation and signal propagation. PD 173074 is a potent and selective inhibitor of FGFR tyrosine kinase activity, blocking autophosphorylation of FGFR1 with an IC50 value of 21.5 nM.{17312} For comparison, it weakly inhibits PDGFR and c-Src (IC50 = 17.6 and 19.8 μM, respectively) and has no effect on EGFR, InsR, MEK, or PKC.{17312} PD 173074 also prevents signaling, at nanomolar levels, through FGFR2-5.{17313,17314,17315,17316,17317} Inhibition of FGFR signaling using PD 173074, impairs angiogenesis as well as self-renewal of stem cells via ERK1/2 activation.{17313,17316,17317,17318,17319}
Size 5 mg
Shipping dry ice
CAS Number 219580-11-7
Molecular Formula C28H41N7O3
SMILES CCN(CC)CCCCNc1ncc2cc(c3cc(OC)cc(OC)c3)c(NC(=O)NC(C)(C)C)nc2n1
Molecular Weight 523,7
Formulation A crystalline solid
Purity ≥95%
Custom Code 2933.59
UNSPSC code 12352100

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Our scientists are experts in the synthesis, purification, and characterization of biochemicals ranging from small drug-like heterocycles to complex biolipids, fatty acids, and many others. We are also highly skilled in all aspects of assay and antibody development, protein expression, crystallization, and structure determination.

Over the past thirty years, Cayman developed a deep knowledge base in lipid biochemistry, including research involving the arachidonic acid cascade, inositol phosphates, and cannabinoids. This knowledge enabled the production of reagents of exceptional quality for cancer, oxidative injury, epigenetics, neuroscience, inflammation, metabolism, and many additional lines of research.

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