Sequential Early-Life Infections Alter Peripheral Blood Transcriptomics in Aging Female Mice but Not the Response to
Kathleen G Lanzer1, Tres Cookenham1, Elin Lehrmann2
1Trudeau Institute, Saranac Lake, NY.
Abstract:
To determine the impact of accumulating Ag exposure on immunity in the aging mouse, and to develop a model more relevant to humans who are exposed to multiple pathogens during life, we sequentially infected young female mice with four distinct pathogens at 8-wk intervals: murine γ-herpesvirus 68, Sendai virus, murine CMV, and Heligmosomoides polygyrus. Mock-infected mice received PBS. After aging the sequentially infected and mock-infected mice to 18-25 mo under specific pathogen-free conditions, we analyzed multiple immune parameters. We assessed transcriptional activity in peripheral blood, T cell phenotype, the diversity of influenza epitopes recognized by CD8 T cells, and the response of the animals to infection with influenza virus and Mycobacterium tuberculosis. Our data show enhanced transcriptional activation in sequentially infected aged mice, with changes in some CD8 T cell subsets. However, there was no measurable difference in the response of mock-infected and sequentially infected aged mice to de novo infection with either influenza virus or M. tuberculosis at 18-21 mo. Unexpectedly, a single experiment in which 25-mo-old female mice were challenged with influenza virus revealed a significantly higher survival rate for sequentially infected (80%) versus mock-infected (20%) mice. These data suggest that although exposure to a variety of pathogen challenges in the mouse model does not overtly impact cellular markers of immunity in aged female mice following de novo respiratory infection, subtle changes may emerge in other compartments or with increasing age.
Insights
Sequential pathogen exposure in aging mice did not overtly affect immune responses to new infections. However, older, sequentially infected mice showed improved survival against influenza, suggesting subtle immune benefits with age.
Area of Science:
- Immunology
- Aging Research
- Infectious Disease
Background:
- Understanding how cumulative Ag exposure impacts immunity in aging is crucial for human health.
- Developing mouse models that mimic human lifelong pathogen exposure is needed.
Purpose of the Study:
- To assess the impact of sequential pathogen exposure on immunity in aging mice.
- To evaluate immune responses and survival following de novo infections in aged, sequentially exposed mice.
Main Methods:
- Young female mice were sequentially infected with four pathogens over time.
- Aged mice (18-25 months) were analyzed for immune parameters and challenged with influenza and Mycobacterium tuberculosis.
- Transcriptional activity, T cell phenotype, and CD8 T cell epitope diversity were assessed.
Main Results:
- Sequentially infected aged mice showed enhanced transcriptional activation and altered CD8 T cell subsets.
- No significant difference in response to de novo influenza or M. tuberculosis infection was observed at 18-21 months.
- Aged mice with prior sequential infections exhibited significantly higher survival rates against influenza challenge.
Conclusions:
- Sequential pathogen exposure in aging mice does not overtly impair immunity to new infections.
- Subtle immune changes may occur with cumulative Ag exposure and aging.
- Prior pathogen exposure may confer unexpected survival benefits in aged mice against specific infections.
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