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Updated: Jul 15, 2026

Orthotopic Implantation and Peripheral Immune Cell Monitoring in the II-45 Syngeneic Rat Mesothelioma Model
Published on: October 2, 2015
IL-28 elicits antitumor responses against murine fibrosarcoma
Muneo Numasaki1, Masatoshi Tagawa, Fumi Iwata
1Department of Geriatric and Respiratory Medicine, Tohoku University School of Medicine, Sendai, Japan. numasaki77@aol.com
Abstract:
IL-28 is a recently described antiviral cytokine. In this study, we investigated the biological effects of IL-28 on tumor growth to evaluate its antitumor activity. IL-28 or retroviral transduction of the IL-28 gene into MCA205 cells did not affect in vitro growth, whereas in vivo growth of MCA205IL-28 was markedly suppressed along with survival advantages when compared with that of controls. When the metastatic ability of IL-28-secreting MCA205 cells was compared with that of controls, the expression of IL-28 resulted in a potent inhibition of metastases formation in the lungs. IL-28-mediated suppression of tumor growth was mostly abolished in irradiated mice, indicating that irradiation-sensitive cells, presumably immune cells, are primarily involved in the IL-28-induced suppression of tumor growth. In vivo cell depletion experiments displayed that polymorphonuclear neutrophils, NK cells, and CD8 T cells, but not CD4 T cells, play an equal role in the IL-28-mediated inhibition of in vivo tumor growth. Consistent with these findings, inoculation of MCA205IL-28 into mice evoked enhanced IFN-gamma production and cytotoxic T cell activity in spleen cells. Antitumor action of IL-28 is partially dependent on IFN-gamma and is independent of IL-12, IL-17, and IL-23. IL-28 increased the total number of splenic NK cells in SCID mice and enhanced IL-12-induced IFN-gamma production in vivo and expanded spleen cells in C57BL/6 mice. Moreover, IL-12 augmented IL-28-mediated antitumor activity in the presence or absence of IFN-gamma. These findings indicate that IL-28 has bioactivities that induce innate and adaptive immune responses against tumors.
Insights
Interleukin-28 (IL-28) demonstrates significant antitumor activity by suppressing tumor growth and metastasis. This cytokine enhances innate and adaptive immune responses, involving neutrophils, NK cells, and CD8 T cells.
Area of Science:
- Immunology
- Oncology
- Cytokine Biology
Background:
- Interleukin-28 (IL-28) is an antiviral cytokine.
- Its potential antitumor activity requires investigation.
Purpose of the Study:
- To evaluate the biological effects of IL-28 on tumor growth and its antitumor potential.
- To elucidate the immune mechanisms underlying IL-28's antitumor effects.
Main Methods:
- In vitro and in vivo studies using MCA205 tumor cells engineered to secrete IL-28.
- In vivo experiments involving irradiation and cell depletion (neutrophils, NK cells, CD4 T cells, CD8 T cells).
- Analysis of immune responses, including cytokine production (IFN-gamma) and cytotoxic T cell activity.
Main Results:
- IL-28 significantly suppressed in vivo tumor growth and lung metastasis without affecting in vitro proliferation.
- IL-28's antitumor effects were largely dependent on irradiation-sensitive immune cells, including neutrophils, NK cells, and CD8 T cells.
- IL-28 enhanced IFN-gamma production and cytotoxic T cell activity, partially mediated by IFN-gamma.
Conclusions:
- IL-28 exhibits potent antitumor activity through the induction of innate and adaptive immune responses.
- IL-28's mechanism involves immune cell activation and cytokine production, highlighting its therapeutic potential in cancer treatment.

