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Insulin-like growth factor-1 receptor crosstalk with integrins, cadherins, and the tumor microenvironment: sticking
Christopher A Galifi1, Teresa L Wood1
1Department of Pharmacology, Physiology, & Neuroscience, Center for Cell Signaling and Cancer Institute of New Jersey, Rutgers Biomedical and Health Sciences, Newark, New Jersey, United States.
Abstract:
Despite decades of research presenting insulin-like growth factor-1 receptor (IGF1R) as an attractive target for cancer therapy, IGF1R inhibitors ultimately failed in clinical trials. This was surprising due to the known cancer-promoting functions of IGF1R, including stimulation of cell invasion, proliferation, and survival. Discourse in the literature has acknowledged that a lack of patient stratification may have impacted the success of IGF1R-inhibitor trials. This argument alludes to the possibility that IGF1R function may be contingent on tumor type and cellular composition. Looking into the known roles of IGF1R, it becomes clear that this receptor interacts with a multitude of different proteins and even has tumor-suppressing functions. IGF1R is implicated in both cell-cell and cell-surface adhesion dynamics, and the effects of either IGF1R downregulation or pharmacological inhibition on cellular adhesion remain poorly understood. In turn, adhesion receptors modulate IGF1R signaling. In addition, our understanding of IGF1R function in tumor-associated immune and stromal cells is lacking, which could contribute to the overwhelming failure of IGF1R inhibitors in the clinic. In this review, we re-investigate clinical trial data to make connections between the failure of these drugs in human cancer patients and the understudied facets of IGF1R function. We describe lesser-known and potentially tumor-suppressive functions of IGF1R that include promoting cell-cell adhesion through E-cadherin, augmenting a pro-inflammatory macrophage phenotype, and stimulating B cells to produce immunoglobulins. We also highlight the important role of adhesion receptors in regulating IGF1R function, and we use this information to infer stratification criteria for selecting patients that might benefit from IGF1R inhibitors.
Insights
Insulin-like growth factor-1 receptor (IGF1R) inhibitors failed in cancer trials. This review explores IGF1R
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Insulin-like growth factor-1 receptor (IGF1R) has been a target for cancer therapy due to its roles in proliferation, invasion, and survival.
- IGF1R inhibitors have unexpectedly failed in clinical trials, despite preclinical promise.
- Potential reasons for failure include lack of patient stratification and underappreciated roles of IGF1R.
Purpose of the Study:
- To re-evaluate clinical trial data and identify reasons for IGF1R inhibitor failure.
- To explore understudied functions of IGF1R, including its potential tumor-suppressive roles.
- To propose patient stratification criteria for future IGF1R-targeted therapies.
Main Methods:
- Review and analysis of existing clinical trial data for IGF1R inhibitors.
- Literature review of IGF1R's known and lesser-known functions in cancer.
- Integration of information on IGF1R interactions with adhesion receptors and immune cells.
Main Results:
- IGF1R exhibits complex functions, including tumor-suppressive roles like promoting cell-cell adhesion via E-cadherin.
- IGF1R influences immune cells, potentially augmenting pro-inflammatory macrophage phenotypes and stimulating B cells.
- Adhesion receptors significantly modulate IGF1R signaling, impacting its overall function.
Conclusions:
- The failure of IGF1R inhibitors may stem from their dual role in cancer and the lack of consideration for tumor microenvironment factors.
- Understanding IGF1R's context-dependent functions, including its interactions with adhesion molecules and immune cells, is crucial.
- Patient stratification based on tumor type, cellular composition, and adhesion receptor status may improve the efficacy of future IGF1R-targeted therapies.
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