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Formula | C44H47F2N9O5S |
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Molecular Weight | 851.96 | CAS No. | 1089283-49-7 | |
Solubility (25°C)* | In vitro | DMSO | 170 mg/mL (199.53 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 | GSK1904529A (GSK 4529) is a selective inhibitor of IGF-1R and IR with IC50 of 27 nM and 25 nM in cell-free assays, >100-fold more selective for IGF-1R/InsR than Akt1/2, Aurora A/B,B-Raf, CDK2, EGFR etc. | ||||
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In vitro | GSK1904529A is a reversible, ATP-competitive inhibitor and has enzyme-inhibitor binding values against IGF-1R and IR with Ki of 1.6 nM and 1.3 nM, respectively. GSK1904529A potently inhibits the ligand-induced phosphorylation of IGF-1R and IR at concentrations above 0.01 μM, followed by blocking downstream signaling (AKT, IRS-1, and ERK). GSK1904529A potently inhibits NIH-3T3/LISN, TC-71, SK-N-MC, SK-ES RD-ES cells with IC50 of 60 nM, 35 nM, 43 nM, 61 nM and 62 nM, respectively. GSK1904529A also inhibits other multiple myeloma and Ewing's sarcoma cell lines including NCI-H929, MOLP-8, LP-1 and KMS-12-BM etc. GSK1904529A induces cell cycle arrest at the G1 phase in cell lines COLO 205, MCF-7, and NCI-H929, which are sensitive to GK1904529A. [1] | ||||
In vivo | GSK1904529A indicates 98% tumor growth inhibition in NIH-3T3/LISN tumor-bearing mice at a dose of 30 mg/kg (orally, twice-daily) and 75% in COLO 205 xenografts mice (once daily). Among HT29 and BxPC3 xenografts, GSK1904529A produces moderate tumor growth inhibition with no side effects at a dose of 30 mg/kg. Meanwhile, GSK1904529A shows minimal effects on blood glucose levels. GSK1904529A (~3.5 μM in blood) completely inhibits IGF-1R phosphorylation. GSK1904529A has been implicated in treatment of various IGF-1R-dependent tumors including prostate, colon, breast, pancreatic, ovarian, and sarcomas. [1] |
Kinase Assay: |
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Cell Assay: |
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Animal Study: |
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, , Dr. Ursula Broder from Institut
, , Xuejun Jiang from Memorial Sloan-Kettering Cancer Center
, , One customer
Data from [Data independently produced by , , Sci Rep, 2017, 7:41404]
Therapeutic Implications of Ceritinib in Cholangiocarcinoma beyond ALK Expression and Mutation [ Pharmaceuticals (Basel), 2024, 17(2)197] | PubMed: 38399413 |
Inhibition of the epigenetically activated miR-483-5p/IGF-2 pathway results in rapid loss of meningioma tumor cell viability [ J Neurooncol, 2023, 162(1):109-118.] | PubMed: 36809604 |
Identification of therapeutic sensitivities in a spheroid drug combination screen of Neurofibromatosis Type I associated High Grade Gliomas [ PLoS One, 2023, 18(2):e0277308] | PubMed: 36730269 |
SFRP4+ stromal cell subpopulation with IGF1 signaling in human endometrial regeneration [ Cell Discov, 2022, 8(1):95] | PubMed: 36163341 |
Dendrocalamus latiflorus and its component rutin exhibit glucose-lowering activities by inhibiting hepatic glucose production via AKT activation [ Acta Pharm Sin B, 2022, 12(5):2239-2251] | PubMed: 35646547 |
Cell Culture Media, Unlike the Presence of Insulin, Affect α-Synuclein Aggregation in Dopaminergic Neurons [ Biomolecules, 2022, 12(4)563] | PubMed: 35454152 |
Dexmedetomidine post-conditioning ameliorates long-term neurological outcomes after neonatal hypoxic ischemia: The role of autophagy [ Life Sci, 2021, 270:118980] | PubMed: 33428879 |
Single-cell lineage analysis reveals genetic and epigenetic interplay in glioblastoma drug resistance [ Genome Biol, 2020, 21(1):174] | PubMed: 32669109 |
Insulin-like growth factor-I prevents hypoxia-inducible factor-1 alpha-dependent G1/S arrest by activating cyclin E/cyclin-dependent kinase2 via the phoshatidylinositol-3 kinase/AKT/forkhead box O1/Cdkn1b pathway in porcine granulosa cells†. [ Biol Reprod, 2020, 102(1):116-132] | PubMed: 31435642 |
SHP2 Drives Adaptive Resistance to ERK Signaling Inhibition in Molecularly Defined Subsets of ERK-Dependent Tumors [ Cell Rep, 2019, 26(1):65-78] | PubMed: 30605687 |
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