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Updated: Aug 7, 2026

Ex vivo Expansion of Tumor-reactive T Cells by Means of Bryostatin 1/Ionomycin and the Common Gamma Chain Cytokines Formulation
Published on: January 15, 2011
Overexpressed cell surface interleukin-4 receptor molecules can be successfully targeted for antitumor cytotoxin
K Kawakami1, M Kawakami, R K Puri
1Division of Celular and Gene Therapies, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD 20852, USA.
Abstract:
A variety of human solid cancer cell lines and primary cell cultures has been reported to overexpress high-affinity receptors (R) for interleukin-4 (IL-4), a pleiotropic immunoregulatory cytokine. The significance of IL-4R expression is not known; however, IL-4 is able to upregulate adhesion molecules, inhibit cell proliferation, and mediate signal transduction in tumor cell lines. To target IL-4R, we produced a chimeric protein composed of a circular permuted IL-4 and a mutated form of Pseudomonas exotoxin [termed IL4(38-37)-PE38KDEL or cpIL4-PE]. The recombinant cpIL4-PE was highly cytotoxic to cancer cells, but not toxic to normal B cells, T cells, monocytes, and CD34+, even though these cells express detectable numbers of IL-4R. The cytotoxicity was specific because excess of recombinant IL-4 neutralized the cpIL4-PE effect. To further develop this molecule, in vivo antitumor activity was tested in animal models of human cancer. This agent showed remarkable antitumor activity in AIDS-Kaposi's sarcoma, glioblastoma multiforme, and breast cancer models in immunodeficient animals. cpIL4-PE caused partial or complete regression of established human tumors. Preclinical efficacy and toxicity studies provided a therapeutic window in which this cancer-targeted agent could be used. On the basis of these studies, we initiated a Phase I clinical trial for the treatment of recurrent glioblastoma multiforme. Our preliminary clinical results suggest that cpIL4-PE has antitumor activity against the deadliest form of brain tumors, without detectable toxicity to normal brain tissues. Thus, IL-4 receptors represent novel targets for cancer cytotoxin therapy.
Insights
Researchers developed a targeted cancer therapy using a modified interleukin-4 (IL-4) protein to target IL-4 receptors on tumor cells. This novel agent demonstrated significant antitumor activity in preclinical models and early clinical trials for glioblastoma multiforme.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Human solid cancers often overexpress interleukin-4 receptors (IL-4R).
- IL-4 signaling can influence tumor cell adhesion, proliferation, and signal transduction.
- The therapeutic potential of targeting IL-4R on cancer cells remains largely unexplored.
Purpose of the Study:
- To develop and evaluate a novel targeted cytotoxin therapy for IL-4R-expressing cancers.
- To assess the efficacy and safety of a chimeric IL-4-toxin fusion protein (cpIL4-PE).
Main Methods:
- Production of a recombinant chimeric protein, cpIL4-PE, combining a modified IL-4 with Pseudomonas exotoxin.
- In vitro cytotoxicity assays on various cancer cell lines and normal immune cells.
- In vivo antitumor activity assessment in animal models of human cancers (Kaposi's sarcoma, glioblastoma, breast cancer).
- Phase I clinical trial initiation for recurrent glioblastoma multiforme.
Main Results:
- cpIL4-PE exhibited high cytotoxicity against cancer cells expressing IL-4R.
- Normal immune cells with IL-4R were not affected, indicating specificity.
- The cytotoxic effect was neutralized by excess IL-4, confirming target specificity.
- Significant in vivo antitumor activity and tumor regression were observed in multiple cancer models.
- Preliminary clinical data suggest antitumor effects in glioblastoma without normal brain tissue toxicity.
Conclusions:
- IL-4 receptors are viable targets for novel cancer cytotoxin therapy.
- cpIL4-PE demonstrates promising preclinical and early clinical efficacy for IL-4R-positive cancers.
- Targeted IL-4R therapy offers a potential new strategy for treating aggressive tumors like glioblastoma.
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