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Updated: May 23, 2026

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Mitigating age-related immune dysfunction heightens the efficacy of tumor immunotherapy in aged mice
Vincent Hurez1, Benjamin J Daniel, Lishi Sun
1Department of Medicine, University of Texas Health Science Center at San Antonio, Adult Cancer Program STRF MC8252, San Antonio, Texas 78229, USA.
Abstract:
Although cancer tends to affect the elderly, most preclinical studies are carried out in young subjects. In this study, we developed a melanoma-specific cancer immunotherapy that shows efficacy in aged but not young hosts by mitigating age-specific tumor-associated immune dysfunction. Both young and aged CD4(+)CD25(hi) regulatory T cells (Treg) exhibited equivalent in vitro T-cell suppression and tumor-associated augmentation in numbers. However, denileukin diftitox (DT)-mediated Treg depletion improved tumor-specific immunity and was clinically effective only in young mice. DT-mediated Treg depletion significantly increased myeloid-derived suppressor cell (MDSC) numbers in aged but not young mice, and MDSC depletion improved tumor-specific immunity and reduced tumor growth in aged mice. Combining Treg depletion with anti-Gr-1 antibody was immunologically and clinically more efficacious than anti-Gr-1 antibody alone in aged B16-bearing mice, similar to Treg depletion alone in young mice. In contrast, DT increased MDSCs in young and aged mice following MC-38 tumor challenge, although effects were greater in aged mice. Anti-Gr-1 boosted DT effects in young but not aged mice. Aged antitumor immune effector cells are therefore competent to combat tumor when underlying tumor-associated immune dysfunction is appropriately mitigated, but this dysfunction varies with tumor, thus also varying responses to immunotherapy. By tailoring immunotherapy to account for age-related tumor-associated immune dysfunctions, cancer immunotherapy for aged patients with specific tumors can be remarkably improved.
Insights
Cancer immunotherapies show promise in aged mice by addressing age-specific immune dysfunction. Targeting regulatory T cells and myeloid-derived suppressor cells improved antitumor immunity in older subjects, suggesting tailored approaches for elderly cancer patients.
Area of Science:
- Immunology
- Oncology
- Gerontology
Background:
- Most cancer research uses young subjects, despite cancer prevalence in the elderly.
- Age-related immune dysfunction impacts cancer immunotherapy efficacy.
- Tumor-associated immune cells, like regulatory T cells (Treg) and myeloid-derived suppressor cells (MDSC), play a role in immune evasion.
Purpose of the Study:
- To develop and evaluate a melanoma-specific cancer immunotherapy in aged versus young hosts.
- To investigate the role of age-specific immune dysfunction in immunotherapy response.
- To identify strategies for improving cancer immunotherapy in elderly patients.
Main Methods:
- Developed a melanoma-specific cancer immunotherapy.
- Utilized young and aged mouse models with B16 or MC-38 tumor challenges.
- Administered denileukin diftitox (DT) for Treg depletion and anti-Gr-1 antibody for MDSC depletion.
- Assessed tumor-specific immunity, immune cell populations (Treg, MDSC), and tumor growth.
Main Results:
- DT-mediated Treg depletion was effective in young mice but increased MDSCs in aged mice.
- MDSC depletion improved tumor-specific immunity and reduced tumor growth in aged mice.
- Combined Treg and MDSC depletion enhanced antitumor immunity and efficacy in aged mice with B16 melanoma.
Conclusions:
- Aged antitumor immune effector cells are capable of combating tumors if age-related immune dysfunction is mitigated.
- Immunotherapy response is dependent on tumor type and the specific immune dysfunctions present.
- Tailoring cancer immunotherapy to address age-related immune dysfunctions can significantly improve outcomes for elderly cancer patients.
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