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Updated: May 13, 2026

Depletion and Reconstitution of Macrophages in Mice
Published on: August 1, 2012
Targeting macrophages rescues age-related immune deficiencies in C57BL/6J geriatric mice
Connie Jackaman1, Hannah G Radley-Crabb, Zoe Soffe
1Immunology and Cancer Group, School of Biomedical Sciences, Curtin University, Perth, WA, 6102, Australia. Connie.Jackaman@curtin.edu.au
Abstract:
Changes to innate cells, such as macrophages and myeloid-derived suppressor cells (MDSCs), during aging in healthy or tumor-bearing hosts are not well understood. We compared macrophage subpopulations and MDSCs from healthy young (6-8 weeks) C57BL/6J mice to those from healthy geriatric (24-28 months) mice. Spleens, lymph nodes, and bone marrow of geriatric hosts contained significantly more M2 macrophages and MDSCs than their younger counterparts. Peritoneal macrophages from geriatric, but not young, mice co-expressed CD40 and CX3CR1 that are usually mutually exclusively expressed by M1 or M2 macrophages. Nonetheless, macrophages from geriatric mice responded to M1 or M2 stimuli similarly to macrophages from young mice, although they secreted higher levels of TGF-β in response to IL-4. We mimicked conditions that may occur within tumors by exposing macrophages from young vs. geriatric mice to mesothelioma or lung carcinoma tumor cell-derived supernatants. While both supernatants skewed macrophages toward the M2-phenotype regardless of age, only geriatric-derived macrophages produced IL-4, suggesting a more immunosuppressive tumor microenvironment will be established in the elderly. Both geriatric- and young-derived macrophages induced allogeneic T-cell proliferation, regardless of the stimuli used, including tumor supernatant. However, only macrophages from young mice induced T-cell IFN-γ production. We examined the potential of an IL-2/agonist anti-CD40 antibody immunotherapy that eradicates large tumors in young hosts to activate macrophages from geriatric mice. IL-2-/CD40-activated macrophages rescued T-cell production of IFN-γ in geriatric mice. Therefore, targeting macrophages with IL-2/anti-CD40 antibody may improve innate and T-cell immunity in aging hosts.
Insights
Aging alters innate immune cells like macrophages and myeloid-derived suppressor cells (MDSCs). Geriatric mice show increased M2 macrophages and MDSCs, potentially leading to a more immunosuppressive tumor environment, but immunotherapy can restore T-cell function.
Area of Science:
- Immunology
- Aging research
- Cancer immunology
Background:
- Innate immune cell changes during aging are poorly understood.
- Macrophages and myeloid-derived suppressor cells (MDSCs) play crucial roles in immune responses and tumor microenvironments.
Purpose of the Study:
- To compare macrophage subpopulations and MDSCs in young versus geriatric mice.
- To investigate the impact of aging on macrophage function in response to tumor microenvironment cues.
- To evaluate the efficacy of IL-2/anti-CD40 antibody immunotherapy in aging hosts.
Main Methods:
- Comparison of spleen, lymph node, and bone marrow cells from young and geriatric mice.
- Analysis of peritoneal macrophage phenotype and cytokine production.
- Co-culture experiments with tumor cell supernatants and allogeneic T-cells.
- Assessment of IL-2/anti-CD40 antibody immunotherapy effects on T-cell function.
Main Results:
- Geriatric mice had increased M2 macrophages and MDSCs.
- Geriatric macrophages exhibited altered phenotype (CD40/CX3CR1 co-expression) and secreted more TGF-β upon IL-4 stimulation.
- Tumor supernatants induced M2 skewing in macrophages of both ages, but only geriatric macrophages produced IL-4.
- IL-2/anti-CD40 immunotherapy restored T-cell IFN-γ production in geriatric mice.
Conclusions:
- Aging promotes an immunosuppressive phenotype in macrophages, potentially exacerbating the tumor microenvironment in elderly individuals.
- Targeting macrophages with IL-2/anti-CD40 antibody immunotherapy shows promise for restoring innate and T-cell immunity in aging hosts.

