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Dysregulated Microglial Cell Activation and Proliferation Following Repeated Antigen Stimulation
- Source :
- Frontiers in Cellular Neuroscience, Vol 15 (2021), Frontiers in Cellular Neuroscience
- Publication Year :
- 2021
- Publisher :
- Frontiers Media SA, 2021.
-
Abstract
- Upon reactivation of quiescent neurotropic viruses antigen (Ag)-specific brain resident-memory CD8+ T-cells (bTRM) may respond tode novo-produced viral Ag through the rapid release of IFN-γ, which drives subsequent interferon-stimulated gene expression in surrounding microglia. Through this mechanism, a small number of adaptive bTRMmay amplify responses to viral reactivation leading to an organ-wide innate protective state. Over time, this brain-wide innate immune activation likely has cumulative neurotoxic and neurocognitive consequences. We have previously shown that HIV-1 p24 Ag-specific bTRMpersist within the murine brain using a heterologous prime-CNS boost strategy. In response to Ag restimulation, these bTRMdisplay rapid and robust recall responses, which subsequently activate glial cells. In this study, we hypothesized that repeated challenges to viral antigen (Ag) (modeling repeated episodes of viral reactivation) culminate in prolonged reactive gliosis and exacerbated neurotoxicity. To address this question, mice were first immunized with adenovirus vectors expressing the HIV p24 capsid protein, followed by a CNS-boost using Pr55Gag/Env virus-like particles (HIV-VLPs). Following the establishment of the bTRMpopulation [>30 days (d)], prime-CNS boost animals were then subjected toin vivochallenge, as well as re-challenge (at 14 d post-challenge), using the immunodominant HIV-1 AI9 CD8+ T-cell epitope peptide. In these studies, Ag re-challenge resulted in prolonged expression of microglial activation markers and an increased proliferative response, longer than the challenge group. This continued expression of MHCII and PD-L1 (activation markers), as well as Ki67 (proliferative marker), was observed at 7, 14, and 30 days post-AI9 re-challenge. Additionally,in vivore-challenge resulted in continued production of inducible nitric oxide synthase (iNOS) with elevated levels observed at 7, 14 and 30 days post re-challenge. Interestingly, iNOS expression was significantly lower among challenged animals when compared to re-challenged groups. Furthermore,in vivospecific Ag re-challenge produced lower levels of arginase (Arg)-1 when compared with the challenged group. Taken together, these results indicate that repeated Ag-specific stimulation of adaptive immune responses leads to cumulative dysregulated microglial cell activation.
- Subjects :
- Population
viral reactivation
microglia
Neurosciences. Biological psychiatry. Neuropsychiatry
Stimulation
immune activation
reactive gliosis
Cellular and Molecular Neuroscience
Immune system
neurotoxicity
medicine
education
Original Research
education.field_of_study
Innate immune system
Microglia
Chemistry
Neurotoxicity
resident memory T-cells
medicine.disease
Microglial cell activation
medicine.anatomical_structure
Cellular Neuroscience
Immunology
CD8
RC321-571
Subjects
Details
- ISSN :
- 16625102
- Volume :
- 15
- Database :
- OpenAIRE
- Journal :
- Frontiers in Cellular Neuroscience
- Accession number :
- edsair.doi.dedup.....fee571c12449e7a6dcb23e022b2a254a
- Full Text :
- https://doi.org/10.3389/fncel.2021.686340