Insulin-like growth factor receptor as a therapeutic target in head and neck cancer

Christopher J Barnes1, Kazufumi Ohshiro, Suresh K Rayala

  • 1Department of Molecular and Cellular Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

Abstract

Insights

Targeting insulin-like growth factor type I receptor (IGF-IR) and epidermal growth factor receptor (EGFR) with antibodies effectively reduced head and neck cancer growth. Combined therapy showed superior results in preclinical models, indicating a promising therapeutic strategy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Therapeutics

Background:

  • Insulin-like growth factor type I receptor (IGF-IR) is crucial for epithelial cancer progression.
  • Epidermal growth factor receptor (EGFR) is a validated therapeutic target in head and neck cancers.
  • IGF-IR and EGFR can form heterodimers, suggesting a potential for combined targeting.

Purpose of the Study:

  • To investigate the effects of anti-IGF-IR antibody IMC-A12 on head and neck squamous cell carcinoma (SCCHN) cell signaling and phenotypes.
  • To evaluate the therapeutic efficacy of IMC-A12 alone and in combination with the EGFR antibody cetuximab (C225).
  • To determine the impact of targeting IGF-IR and EGFR on SCCHN growth and survival.

Main Methods:

  • Testing IMC-A12 and C225 in SCCHN cell lines and tumor xenografts.
  • Assessing the impact of IMC-A12 on IGF-stimulated signaling pathways (IRS-1/2, MAPK, PI3K).
  • Evaluating cell cycle arrest, growth, motility, and anchorage-independent growth.
  • Analyzing IGF-IR/EGFR heterodimerization upon stimulation with IGF or EGF.
  • Treating TU159 xenografts with vehicle, IMC-A12, C225, or combination therapy.

Main Results:

  • IGF-IR is overexpressed in SCCHN cell lines and tumors.
  • IMC-A12 blocked IGF-stimulated signaling, induced cell cycle arrest, and inhibited growth and motility.
  • IGF and EGF stimulation led to IGF-IR/EGFR heterodimerization.
  • Combined IMC-A12 and C225 treatment was more effective than monotherapy in reducing proliferation and migration.
  • Combination therapy resulted in complete tumor regression in 44% of xenografts.

Conclusions:

  • IGF-IR is overexpressed in human head and neck cancers.
  • Functional heterodimerization of IGF-IR and EGFR occurs in these cancers.
  • Targeting both IGF-IR and EGFR with antibodies demonstrates significant therapeutic potential in preclinical models.

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