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Updated: Jun 21, 2026

Testing Cancer Immunotherapeutics in a Humanized Mouse Model Bearing Human Tumors
Published on: December 16, 2022
Complete regression of advanced primary and metastatic mouse melanomas following combination chemoimmunotherapy
Judith Kohlmeyer1, Mira Cron, Jennifer Landsberg
1Department of Dermatology and Allergology, Laboratory of Experimental Dermatology, Institute of Clinical Chemistry and Pharmacology, University of Bonn, Bonn, Germany.
Abstract:
The development of therapeutic strategies which induce effective cellular antitumor immunity represents an important goal in cancer immunology. Here, we used the unique features of the genetically engineered Hgf-Cdk4(R24C) mouse model to identify a combination chemoimmunotherapy for melanoma. These mice develop primary cutaneous melanomas which grow progressively and metastasize in the absence of immunogenic foreign proteins such as oncogenes or antigens. Primary and metastatic tumors evade innate and adaptive immune defenses, although they naturally express melanocytic antigens which can be recognized by antigen-specific T cells. We found that primary melanomas continued to grow despite infiltration with adoptively transferred, in vivo-activated, tumor-specific CD8(+) T cells. To promote tumor immune defense, we developed a treatment protocol consisting of four complementary components: (a) chemotherapeutic preconditioning prior to (b) adoptive lymphocyte transfer and (c) viral vaccination followed by (d) adjuvant peritumoral injections of immunostimulatory nucleic acids. Lymphocyte ablation and innate antiviral immune stimulation cooperatively enhanced the expansion and the effector cell differentiation of adoptively transferred lymphocytes. The efficacy of the different treatment approaches converged in the tumor microenvironment and induced a strong cytotoxic inflammatory response enabling preferential recognition and destruction of melanoma cells. This combination chemoimmunotherapy caused complete regression of advanced primary melanomas in the skin and metastases in the lung with minimal autoimmune side effects. Our results in a clinically highly relevant experimental model provide a scientific rationale to evaluate similar strategies which unleash the power of innate and adaptive immune defense in future clinical trials.
Insights
A novel chemoimmunotherapy combining chemotherapy, adoptive lymphocyte transfer, viral vaccination, and nucleic acid injections effectively eradicated melanoma in a mouse model. This strategy harnesses both innate and adaptive immunity to destroy tumors with minimal side effects.
Area of Science:
- Cancer Immunology
- Melanoma Research
- Immunotherapy Development
Background:
- Therapeutic strategies inducing cellular antitumor immunity are crucial for cancer treatment.
- Genetically engineered Hgf-Cdk4(R24C) mice develop progressive, metastatic melanomas that evade immune defenses.
- Tumor-specific CD8(+) T cells alone were insufficient to halt melanoma progression in this model.
Purpose of the Study:
- To identify a combination chemoimmunotherapy for melanoma using the Hgf-Cdk4(R24C) mouse model.
- To develop a treatment protocol that overcomes immune evasion in primary and metastatic melanomas.
Main Methods:
- A four-component treatment protocol was developed: chemotherapeutic preconditioning, adoptive lymphocyte transfer, viral vaccination, and adjuvant immunostimulatory nucleic acid injections.
- The study investigated how lymphocyte ablation and innate antiviral immune stimulation impact adoptively transferred lymphocytes.
- The combined treatment's effects on the tumor microenvironment and immune response were analyzed.
Main Results:
- The combination therapy significantly enhanced the expansion and effector cell differentiation of transferred lymphocytes.
- The treatment induced a potent cytotoxic inflammatory response within the tumor microenvironment.
- Complete regression of primary skin melanomas and lung metastases was achieved with minimal autoimmune side effects.
Conclusions:
- This combination chemoimmunotherapy demonstrates significant efficacy in a clinically relevant melanoma model.
- The strategy effectively utilizes innate and adaptive immune responses to eliminate advanced melanoma.
- The findings provide a strong rationale for evaluating similar combination approaches in human clinical trials.

