GW806742X is a Mixed Lineage Kinase Domain-Like protein (MLKL) inhibitor which binds the MLKL pseudokinase domain with a Kd value of 9.3 μM and has anti-necroptosis activity. GW806742X has activity against VEGFR2. 了解更多
R916562 is an orally active and selective Axl/VEGF-R2 inhibitor with IC50s of 136 nM and 24 nM, respectively. R916562 has anti-angiogenesis and anti-metastasis. 了解更多
ODM-203 is a potent FGFR and VEGFR families inhibitor with IC50s of 11, 16, 6, 35 nM towards recombinant FGFR1, FGFR2, FGFR3 and FGFR4 as well as 26, 9, 5 nM towards VEGFR1, VEGFR2 and VEGFR3, respectively. 了解更多
Cabozantinib S-malate (XL184 S-malate) is a potent multiple receptor tyrosine kinases inhibitor that inhibits VEGFR2, c-Met, Kit, Axl and Flt3 with IC50s of 0.035, 1.3, 4.6, 7 and 11.3 nM, respectively. 了解更多
Paula Sagmeister, .et al. Comparative Response of HCC Cells to TKIs: Modified in vitro Testing and Descriptive Expression Analysis, J Hepatocell Carcinoma, 2022, Jul 9;9:595-607 PMID: 35845819
Aya Hasan Alshammari, .et al. Discrimination of hand-foot skin reaction caused by tyrosine kinase inhibitors based on direct keratinocyte toxicity and vascular endothelial growth factor receptor-2 inhibition, Biochem Pharmacol, 2022, Mar;197:114914 PMID: 35041812
Regorafenib Hydrochloride is a multi-target inhibitor for VEGFR1/2/3, PDGFRβ, Kit, RET and Raf-1 with IC50s of 13/4.2/46, 22, 7, 1.5 and 2.5 nM, respectively. 了解更多
Wei Kang Cheng, .et al. Downregulation of Manic fringe impedes angiogenesis and cell migration of renal carcinoma, Microvasc Res, 2022, Feb 11;142:104341 PMID: 35157839
AG-13958 (AG-013958), a potent VEGFR tyrosine kinase inhibitor, is used for treatment of choroidal neovascularization associated with age-related macular degeneration (AMD). 了解更多
TAS-115 mesylate is a potent VEGFRand hepatocyte growth factor receptor (c-Met/HGFR)-targeted kinase inhibitor, with IC50s of 30 and 32 nM for rVEGFR2 and rMET, respectively. 了解更多
Sorafenib D3 (Bay 43-9006 D3) is the deuterium labeled Sorafenib. Sorafenib is a multikinase inhibitor IC50s of 6 nM, 20 nM, and 22 nM for Raf-1, B-Raf, and VEGFR-3, respectively. 了解更多
Sorafenib D4 (Bay 43-9006 D4) is the deuterium labeled Sorafenib. Sorafenib is a multikinase inhibitor IC50s of 6 nM, 20 nM, and 22 nM for Raf-1, B-Raf, and VEGFR-3, respectively. 了解更多
TAS-115 is a potent VEGFR and hepatocyte growth factor receptor (c-Met/HGFR)-targeted kinase inhibitor with IC50s of 30 and 32 nM for rVEGFR2 and rMET, respectively. 了解更多
ENMD-2076 Tartrate is a multi-targeted kinase inhibitor with IC50s of 1.86, 14, 58.2, 15.9, 92.7, 70.8, 56.4 nM for Aurora A, Flt3, KDR/VEGFR2, Flt4/VEGFR3, FGFR1, FGFR2, Src, PDGFRα, respectively. 了解更多
Sulfatinib (HMPL-012) is a potent and highly selective tyrosine kinase inhibitor against VEGFR1/2/3, FGFR1 and CSF1R with IC50s of in a range of 1 to 24 nM. 了解更多
Sorafenib (Bay 43-9006) is a potent, orally active multikinase inhibitor with IC50s of 6 nM, 20 nM, and 22 nM for Raf-1, B-Raf, and VEGFR-3, respectively. 了解更多
CP-547632 hydrochloride is a well-tolerated, orally-bioavailable inhibitor of the VEGFR-2 and basic fibroblast growth factor (FGF) kinases with IC50s of 11 nM and 9 nM, respectively. 了解更多
SU-4312, also known as DMBI, is a potent and selective inhibitor of VEGFR and PDGFR tyrosine kinases (IC50 values are 0.8 and 19.4 μM respectively). 了解更多
XL092 is an ATP-competitive inhibitor of multiple RTKs including MET, VEGFR2, AXL and MER, with IC50 values in cell-based assays of 15, 1.6, 3.4, and 7.2 nM respectively. 了解更多
JNJ-38158471 is a well tolerated, orally available, highly selective VEGFR-2 inhibitor, with an IC50 of 40 nM. JNJ-38158471 also inhibits Ret and Kit with IC50s of 180 and 500 nM, respectively. 了解更多
Hiroki Ozawa, .et al. Targeting AURKA in treatment of peritoneal tumor dissemination in gastrointestinal cancer, Transl Oncol, 2022, Feb;16:101307 PMID: 34902741
Cong Li, .et al. AMG 925 is a dual FLT3/CDK4 inhibitor with the potential to overcome FLT3 inhibitor resistance in acute myeloid leukemia., Mol Cancer Ther., 2015, Feb;14(2):375-83. PMID: 25487917
Pirita Pekkonen, .et al. KSHV viral cyclin interferes with T-cell development and induces lymphoma through Cdk6 and Notch activation in vivo, Cell Cycle, 2014, Dec 1; 13(23): 3670-3684 PMID: 25483078
Takeshi Ito, .et al. Mathematical analysis of gefitinib resistance of lung adenocarcinoma caused by MET amplification, Biochem Biophys Res Commun, 2019, in Press
Khattab M, .et al. Conformational Plasticity in Tyrosine Kinase Inhibitor-Kinase Interactions Revealed with Fluorescence Spectroscopy and Theoretical Calculations, J Phys Chem B, 2018, May 3;122(17):4667-4679 PMID: 29629773
Muhammad Khattab, .et al. A pH-induced conformational switch in a tyrosine kinase inhibitor identified by electronic spectroscopy and quantum chemical calculations, Sci Rep, 2017, 7: 16271 PMID: 29176733
Yuta Yamamoto, .et al. Quantitative determination of erlotinib in human serum using competitive enzyme-linked immunosorbent assay, J Pharm Anal, 2018, Apr; 8(2): 119-123 PMID: 29736298
Janet L. Martin, .et al. Inhibition of basal-like breast cancer growth by FTY720 in combination with epidermal growth factor receptor kinase blockade, Breast Cancer Res, 2017, 19: 90 PMID: 28778177
Takata N, .et al. IGF-2/IGF-1R signaling has distinct effects on Sox1, Irx3, and Six3 expressions during ES cell derived-neuroectoderm development in vitro, In Vitro Cell Dev Biol Anim., 2016, May;52(5):607-15 PMID: 26956358
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