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Published on: May 1, 2015
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.
Purpose:
Insulin-like growth factor type I receptor (IGF-IR) plays critical roles in epithelial cancer cell development, proliferation, motility, and survival, and new therapeutic agents targeting IGF-IR are in development. Another receptor tyrosine kinase, the epidermal growth factor receptor (EGFR), is an established therapeutic target in head and neck cancer and IGF-IR/EGFR heterodimerization has been reported in other epithelial cancers. The present study was undertaken to determine the effects of anti-IGF-IR therapeutic targeting on cell signaling and cancer cell phenotypes in squamous cell carcinomas of the head and neck (SCCHN).
Experimental Design:
The therapeutic efficacy of the human anti-IGF-IR antibody IMC-A12 alone and in combination with the EGFR blocking antibody cetuximab (C225) was tested in SCCHN cell lines and in tumor xenografts.
Results:
IGF-IR was overexpressed in human head and neck cancer cell lines and tumors. Pretreatment of serum-starved 183A or TU159 SCCHN cell lines with A12 (10 microg/mL) blocked IGF-stimulated activation of IGF-IR, insulin receptor substrate (IRS)-1 and IRS-2, mitogen-activated protein kinase, and phosphatidylinositol 3-kinase. A12 induced G(0)-G(1) cell cycle arrest and blocked cell growth, motility, and anchorage-independent growth. Stimulation of head and neck cancer cells with either IGF or EGF resulted in IGF-IR and EGFR heterodimerization, but only IGF caused activating phosphorylation of both receptors. Combined treatment with A12 and the EGFR blocking antibody C225 was more effective at reducing cell proliferation and migration than either agent alone. Finally, TU159 tongue cancer cell xenografts grown in athymic nude mice were treated thrice weekly for 4 weeks with vehicle, A12 (40 mg/kg i.p.), C225 (40 mg/kg i.p.), or both agents (n=8 mice per group; 2 tumors per mouse). Linear regression slope analysis showed significant differences in median tumor volume over time between all three treatment groups and the control group. Complete regression was seen in 31% (A12), 31% (C225), and 44% (A12 + C225) of tumors.
Conclusion:
Here we found the overexpression of IGF-IR, the functional heterodimerization of IGF-IR and EGFR, and effective therapeutic targeting of these receptors in human head and neck cancer xenografts.
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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