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Study summary · research use only

In vitro and in vivo antitumor effects of the dual insulin-like growth factor-I/insulin receptor inhibitor, BMS-554417

Study · human · Cancer research · 2006 · DOI 10.1158/0008-5472.CAN-05-1107 · PMID 16397250

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

In this study, the authors characterized BMS-554417, a small-molecule inhibitor of the insulin-like growth factor-I receptor (IGF-IR) and insulin receptor, in vitro and in vivo. They report it inhibited receptor kinase activity and proliferation across carcinoma cell lines (IC50 from 120 nmol/L in Colo205 to over 8.5 micromol/L in OV202), inhibited signaling through ERK and the PI3K/Akt pathway, caused a G0-G1 arrest, and prevented nuclear accumulation of cyclin D1. In Jurkat leukemia cells it triggered apoptosis via the mitochondrial pathway. The compound was orally bioavailable and reduced IGF1R-Sal tumour xenograft growth in vivo. The authors describe it as a member of a new class with antiproliferative and proapoptotic activity.

Abstract

The insulin-like growth factor receptor (IGF-IR) and insulin receptor are either overactivated and/or overexpressed in a wide range of tumor types and contribute to tumorigenicity, proliferation, metastasis, and drug resistance. Here, we show that BMS-554417, a novel small molecule developed as an inhibitor of IGF-IR, inhibits IGF-IR and insulin receptor kinase activity and proliferation in vitro, and reduces tumor xenograft size in vivo. In a series of carcinoma cell lines, the IC50 for proliferation ranged from 120 nmol/L (Colo205) to >8.5 micromol/L (OV202). The addition of stimulatory ligands was unnecessary for the antiproliferative effect in MCF-7 and OV202 cells. BMS-554417 treatment inhibited IGF-IR and insulin receptor signaling through extracellular signal-related kinase as well as the phosphoinositide 3-kinase/Akt pathway, as evidenced by decreased Akt phosphorylation at Ser473. At doses that inhibited proliferation, the compound also caused a G0-G1 arrest and prevented nuclear accumulation of cyclin D1 in response to LR3 IGF-I. In Jurkat T-cell leukemia cells, this agent triggered apoptotic cell death via the mitochondrial pathway. BMS-554417 was orally bioavailable and significantly inhibited the growth of IGF1R-Sal tumor xenografts in vivo. BMS-554417 is a member of a novel class of IGF-IR/insulin receptor inhibitors that have potential clinical applications because of their antiproliferative and proapoptotic activity in vitro and in vivo.

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