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Amuvatinib hydrochloride (MP470 hydrochloride) (Synonyms: MP470 hydrochloride; HPK 56 hydrochloride)

Catalog No.GC33362

Le chlorhydrate d'amuvatinib (chlorhydrate de MP470) (chlorhydrate de MP470) est un inhibiteur de tyrosine kinase multi-cible biodisponible par voie orale avec une activité puissante contre le mutant c-Kit, PDGFRα, Flt3, c-Met et c-Ret. Le chlorhydrate d'amuvatinib (chlorhydrate de MP470) (chlorhydrate de MP470) est également un suppresseur de réparation de l'ADN par suppression de la protéine de réparation de l'ADN RAD51, perturbant ainsi la réparation des dommages À l'ADN. Activité antinéoplasique.

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Amuvatinib hydrochloride (MP470 hydrochloride) Chemical Structure

Cas No.: 1055986-67-8

Taille Prix Stock Qté
5mg
101,00 $US
En stock
10mg
166,00 $US
En stock
50mg
496,00 $US
En stock
100mg
873,00 $US
En stock

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Description Chemical Properties Product Documents Related Products

Amuvatinib hydrochloride (MP470 hydrochloride) is a multi-targeted receptor tyrosine kinases inhibitor, which inhibits c-Kit (D816V), c-Kit (D816H), c-Kit (V560G), c-Kit (V654A), PDGFRα (D842V), and PDGFRα (V561D) with IC50s of 950 nM, 10 nM, 34 nM, 127 nM, 81 nM, and 40 nM, respectively[1]. Antineoplastic activity[2].

MP470, a novel receptor tyrosine kinase (RTK) inhibitor has shown growth inhibitory activity against a variety of cancer cell lines. MP470 is effective on LNCaP and PC-3 cells with an IC50 of ~4 μM and 8 μM, respectively. When Erlotinib (10 μM) is combined with varying doses of MP470, the IC50 of MP470 decreased to 2 μM on LNCaP cells[2]. Akt activity (as measured by phosphorylation on Ser473) is significantly reduced by 10 μM MP470 alone but is not reduced by Erlotinib or Imatinib Mesylate (IM). Moreover, MP470 plus Erlotinib completely abolished Akt phosphorylation in LNCaP cells with an unchanged total protein level of Akt[2].

Four LNCaP xenograft arms each with 12 mice are dosed intraperitoneally with DMSO (control) or Erlotinib 80 mg/kg or MP470 50 mg/kg or Erlotinib 80 mg/kg plus MP470 50 mg/kg daily for 2 weeks and then observed for a further 11 days. Individual therapy with MP470 or Erlotinib shows modest tumor growth inhibition (TGI), while MP470 plus Erlotinib has a marked effect on TGI (45-65%). However, due to the high doses of MP470 used, only five or one mouse remained alive in the combination arm at the end of treatment or at the end of the study, respectively. Therefore the MP470 dose is reduced to 10 mg/kg or 20 mg/kg for the combination treatment. TGI in the group receiving 10 mg/kg MP470+80 mg/kg Erlotinib is not significantly different from the control group. However, mice receiving 20 mg/kg MP470+80 mg/kg Erlotinib have a significant TGI compared to the control group (p=0.01)[2].

[1]. David J. Bearss, et al. Pharmaceutical formulations comprising salts of a protein kinase inhibitor and methods of using same. US20080226747A1. [2]. Qi W, et al. MP470, a novel receptor tyrosine kinase inhibitor, in combination with Erlotinib inhibits the HER family/PI3K/Akt pathway and tumor growth in prostate cancer. BMC Cancer. 2009 May 11;9:142.

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