Details
Stereochemistry | ACHIRAL |
Molecular Formula | C27H25N5O2 |
Molecular Weight | 451.5197 |
Optical Activity | NONE |
Defined Stereocenters | 0 / 0 |
E/Z Centers | 0 |
Charge | 0 |
SHOW SMILES / InChI
SMILES
CN1C=NC2=C(C=C(NC3=CC(NC(=O)C4=CC=CC(=C4)C(C)(C)C#N)=CC=C3C)C=C2)C1=O
InChI
InChIKey=ZGBGPEDJXCYQPH-UHFFFAOYSA-N
InChI=1S/C27H25N5O2/c1-17-8-9-21(31-25(33)18-6-5-7-19(12-18)27(2,3)15-28)14-24(17)30-20-10-11-23-22(13-20)26(34)32(4)16-29-23/h5-14,16,30H,1-4H3,(H,31,33)
AZ-628 is a new pan-Raf inhibitor for BRAF, BRAFV600E, and c-Raf-1 with IC50 of 105 nM, 34 nM and 29 nM in cell-free assays. Specificity
profliling indicates that AZ-628 also inhibits activation of number of tyrosine protein kinases including VEGFR2, DDR2, Lyn, Flt1, FMS and others. AZ-628 inhibits anchorage-dependent and -independent growth, causes cell cycle arrest, and induces apoptosis in colon and
melanoma cell lines harboring B-RafV600E mutation. The profile of AZ-628 cross-reactivity suggests that similar to sorafenib, AZ-628 may be antiangiogenic based on inhibition of VEGFR2. AZ-628 is remarkably effective at inhibiting the growth of a specific subset of human cancer cell lines derived from melanomas, thyroid cancers, and colorectal cancers that harbor the BRAF V600E mutation. Preclinical evaluation is in progress.
Originator
Approval Year
Targets
Primary Target | Pharmacology | Condition | Potency |
---|---|---|---|
Target ID: CHEMBL1906 |
29.0 nM [IC50] | ||
Target ID: CHEMBL5145 |
105.0 nM [IC50] | ||
Target ID: CHEMBL1795199 Sources: https://www.ncbi.nlm.nih.gov/pubmed/24901049 |
0.9 µM [IC50] |
Conditions
Condition | Modality | Targets | Highest Phase | Product |
---|---|---|---|---|
Primary | Unknown Approved UseUnknown |
Sample Use Guides
AZ-628 potently inhibited PMA-stimulated AP1 reporter activity in 293T cells with an IC50 value <4nM. AZ-628 decreased phospho-ERK (pERK) levels in Colo205 and A375 cancer cell lines with endogenous V600E BRAF mutations, with EC50 values in the 14-16nM range, and induced a predominant G1 arrest phenotype in both cell types.
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ACTIVE MOIETY