PQ 401

PQ 401

Catalog Number:
L002368380APE
Mfr. No.:
APE-A2033
Price:
$270
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      • Overview
        • Please contact us at for specific academic pricing.

          Background

          PQ401 is a novel, potent inhibitor of IGF-IR with IC50 of 12μM [1].
          In human MCF-7 cells, PQ401 inhibited autophosphorylation of the IGF-IR with IC50 of 12 μM and autophosphorylation of the isolated kinase domain of the IGF-IR with IC50 < 1μM. In addition, PQ401 inhibited the growth of cultured breast cancer cells in serum at 10μM. PQ401 can decrease IGF-I-mediated signaling through the Akt antiapoptotic pathway. Twenty-four hours treatment of 15 μM PQ401 induced caspase-mediated apoptosis [1]. In small trigeminal ganglion neurons, PQ401 blocked the IGF-1-induced A-type K(+) currents (IA) that were associated with a hyperpolarizing shift in the voltage dependence of inactivation [2].
          In vivo, a treatment with PQ401 triple per week reduced the growth rate of MCNeuA cells implanted into mice [1].

          [1]. Gable KL, Maddux BA, Penaranda C, Zavodovskaya M, Campbell MJ, Lobo M, Robinson L, Schow S, Kerner JA, Goldfine ID, Youngren JF. Diarylureas are small-molecule inhibitors of insulin-like growth factor I receptor signaling and breast cancer cell growth. Mol Cancer Ther. 2006 Apr;5(4):1079-86.
          [2]. Wang H, Qin J, Gong S, Feng B, Zhang Y, Tao J. Insulin-like growth factor-1 receptor-mediated inhibition of A-type K(+) current induces sensory neuronal hyperexcitability through the phosphatidylinositol 3-kinase and extracellular signal-regulated kinase 1/2 pathways, independently of Akt. Endocrinology. 2014 Jan;155(1):168-79.

      • Properties
        • Alternative Name
          1-(5-chloro-2-methoxyphenyl)-3-(2-methylquinolin-4-yl)urea
          CAS Number
          196868-63-0
          Molecular Formula
          C18H16ClN3O2
          Molecular Weight
          341.79
          Appearance
          A solid
          Purity
          98.00%
          Solubility
          insoluble in H2O; ≥17.1 mg/mL in DMSO; ≥2.38 mg/mL in EtOH with ultrasonic
          Storage
          Store at -20°C

          * For Research Use Only

      • Reference
        • 1. Lin B, Coleman JH, et al. "Injury Induces Endogenous Reprogramming and Dedifferentiation of Neuronal Progenitors to Multipotency." Cell Stem Cell. 2017 Nov 20. pii: S1934-5909(17)30375-2. PMID:29174332

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