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Targeting IL4/IL4R for the treatment of epithelial cancer metastasis
Katherine Venmar Bankaitis1, Barbara Fingleton2
1Department of Cancer Biology, Vanderbilt University, 771 PRB, 2220 Pierce Ave, Nashville, TN, 37233-6480, USA.
Abstract:
While progress has been made in treating primary epithelial tumors, metastatic tumors remain largely incurable and still account for 85-90 % of all cancer-related deaths. Interleukin-4 (IL4), a Th2 cytokine, and the IL4/IL4 receptor (IL4R) interaction have well defined roles in the immune system. Yet, IL4 receptors are over-expressed by many epithelial cancers and could be a promising target for metastatic tumor therapy. The IL4/IL4R signaling axis is a strong promoter of pro-metastatic phenotypes in epithelial cancer cells including enhanced migration, invasion, survival, and proliferation. The promotion of breast cancer growth specifically is also supported in part by IL4-induced glutamine metabolism, and we have shown that IL4 is also capable of inducing glucose metabolism in breast cancer cells. Importantly, there are several types of FDA approved medications for use in asthma patients that inhibit the IL4/IL4R signaling axis. However, these approved medications inhibit both the type I IL4 receptor found on immune cells, and the type II IL4 receptor that is predominantly expressed by some non-hematopoietic cells including epithelial cancer cells. This article reviews existing therapies targeting IL4, IL4R, or IL4/IL4R signaling, and recent findings guiding the creation of novel therapies that specifically inhibit the type II IL4R, while taking into consideration effects on immune cells within the tumor microenvironment. Some of these therapies are currently in clinical trials for cancer patients, and may be exploitable for the treatment of metastatic disease.
Insights
Targeting Interleukin-4 (IL4) and its receptor (IL4R) shows promise for metastatic cancer therapy. Novel treatments aim to specifically inhibit the type II IL4 receptor on cancer cells, sparing immune cells.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Metastatic tumors are a major cause of cancer mortality, with limited treatment options.
- Interleukin-4 (IL4) and its receptor (IL4R) signaling promote cancer cell migration, invasion, survival, and proliferation.
- IL4 signaling also influences cancer cell metabolism, including glucose and glutamine pathways.
Purpose of the Study:
- To review current therapies targeting the IL4/IL4R axis in cancer.
- To discuss recent findings for developing novel therapies specifically targeting the type II IL4 receptor.
- To consider the impact of these therapies on the tumor microenvironment and immune cells.
Main Methods:
- Review of existing literature on IL4/IL4R signaling in epithelial cancers.
- Analysis of FDA-approved medications targeting IL4/IL4R.
- Examination of recent research on novel therapeutic strategies.
Main Results:
- IL4 receptors are overexpressed on many epithelial cancers, making them a potential therapeutic target.
- Existing IL4/IL4R inhibitors affect both type I (immune cells) and type II (cancer cells) receptors.
- Emerging therapies aim for selective inhibition of the type II IL4 receptor.
Conclusions:
- Targeting the IL4/IL4R axis offers a promising avenue for metastatic cancer treatment.
- Selective inhibition of the type II IL4 receptor may improve efficacy and reduce side effects.
- Several novel therapies are in clinical trials and may be applicable to metastatic disease.
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