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Formula | C30H29ClN6O3 |
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Molecular Weight | 557.04 | CAS No. | 698387-09-6 | |
Solubility (25°C)* | In vitro | DMSO | 3 mg/mL (5.38 mM) | |
Water | Insoluble | |||
Ethanol | Insoluble | |||
* <1 mg/ml means slightly soluble or insoluble. * Please note that Selleck tests the solubility of all compounds in-house, and the actual solubility may differ slightly from published values. This is normal and is due to slight batch-to-batch variations. * Room temperature shipping (Stability testing shows this product can be shipped without any cooling measures.) |
Description | Neratinib is a highly selective HER2 and EGFR inhibitor with IC50 of 59 nM and 92 nM in cell-free assays; weakly inhibits KDR and Src, no significant inhibition to Akt, CDK1/2/4, IKK-2, MK-2, PDK1, c-Raf and c-Met. Phase 3. | ||||||||
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Targets |
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In vitro | Neratinib weakly inhibits tyrosine kinases KDR and Src with IC50 of 0.8 μM and 1.4 μM, respectively, being 14- and 24-fold less active compared with HER2. Neratinib displays no activity against other serine-threonine kinases such as Akt, cyclin D1/cdk4, cyclin E/cdk2, cyclin B1/cdk1, IKK-2, MK-2, PDK1, c-Raf, and Tpl-2, as well as the tyrosine kinase c-Met. Neratinib selectively inhibits the proliferation of 3T3 cells transfected with the HER2 (3T3/neu), as well as two other HER-2-overexpressing SK-Br-3 and BT474 cells with IC50 values of 2-3 nM, displaying >230-fold potency compared with non-transfected 3T3 cells as well as MDA-MB-435 and SW620 which are EGFR- and HER2-negative. Neratinib also inhibits the proliferation of EGFR-dependent A431 cells with an IC50 of 81 nM. Neratinib reduces HER2 receptor autophosphorylation in BT474 cells with an IC50 of 5 nM, and EGF-dependent phosphorylation of EGFR in A431 cells with IC50 of 3 nM. Blocking of HER-2 by Neratinib results in inhibition of downstream MAPK and Akt pathways with IC50 of 2 nM, more potently than Trastuzumab. Neratinib inhibits the cyclin D1 expression and the phosphorylation of the Rb-susceptibility gene production in BT474 cells with IC50 of 9 nM, leading to G1-S arrest and ultimately decreased cell proliferation. [1] | ||||||||
In vivo | Oral administration of Neratinib significantly inhibits the growth of 3T3/neu xenografts, with inhibition of 34%, 53%, 98%, and 98% at dose of 10, 20, 40, and 80 mg/kg/day, respectively. Consistent with the inhibition of HER-2 phosphorylation by 84% within 1 hour of administration at 40 mg/kg/day, Neratinib inhibits the growth of BT474 xenografts by 70-82%, 67%, and 93% at dose of 5, 10, and 40 mg/kg/day, respectively. Neratinib is also effective against SK-OV-3 xenografts with inhibition of 31% and 85% at 5 and 60 mg/kg/day, respectively. Neratinib is less potent against EGFR-dependent A431 xenografts than HER-2-dependent tumors, with 32% and 44% inhibition at 5 and 20 mg/kg/day, respectively. Neratinib displays little activity against MCF-7 and MX-1 xenografts expressing low levels of HER-2 and EGFR, with only 28% inhibition at 80 mg/kg/day, suggesting that Neratinib has selective activity for cells expressing HER-2 or EGFR. [1] |
Kinase Assay:[1] |
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Cell Assay:[1] |
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Animal Study:[1] |
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Data from [Cancer Discov, 2013, 3, 224-37]
Data from [Cancer Discov, 2012, 2, 458-471]
Data from [Cancer Discov, 2012, 2, 458-471]
Data from [Data independently produced by , , Cancer Lett, 2016, 382(2):176-185]
Synergistic Effects of Neratinib in Combination With Palbociclib or Miransertib in Brain Cancer Cells [ World J Oncol, 2024, 15(3):492-505] | PubMed: 38751701 |
The Combination of Afatinib With Dasatinib or Miransertib Results in Synergistic Growth Inhibition of Stomach Cancer Cells [ World J Oncol, 2024, 15(2):192-208] | PubMed: 38545471 |
HER4 and EGFR activate cell signaling in NRG1 fusion-driven cancers: implications for HER2/HER3-specific vs. pan-HER targeting strategies [ J Thorac Oncol, 2023, S1556-0864(23)00802-X] | PubMed: 37678511 |
Irreversible HER2 inhibitors overcome resistance to the RSL3 ferroptosis inducer in non-HER2 amplified luminal breast cancer [ Cell Death Dis, 2023, 14(8):532] | PubMed: 37596261 |
Novel mutant KRAS addiction signature predicts response to the combination of ERBB and MEK inhibitors in lung and pancreatic cancers [ iScience, 2023, 26(3):106082] | PubMed: 36852277 |
Novel mutant KRAS addiction signature predicts response to the combination of ERBB and MEK inhibitors in lung and pancreatic cancers [ iScience, 2023, 26(3):106082] | PubMed: 36852277 |
Inhibiting BRAF/EGFR/MEK suppresses cancer stemness and drug resistance of primary colorectal cancer cells [ Oncotarget, 2023, 14:879-889] | PubMed: 37791907 |
Inhibiting BRAF/EGFR/MEK suppresses cancer stemness and drug resistance of primary colorectal cancer cells [ Oncotarget, 2023, 10.18632/oncotarget.28517] | PubMed: 37791907 |
Novel HER2-targeted therapy to overcome trastuzumab resistance in HER2-amplified gastric cancer [ Sci Rep, 2023, 13(1):22648] | PubMed: 38114573 |
Dishevelled 2 regulates cancer cell proliferation and T cell mediated immunity in HER2-positive breast cancer [ BMC Cancer, 2023, 23(1):172] | PubMed: 36809986 |
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