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Microglia Are Critical in Host Defense against Prion Disease
James A Carroll1, Brent Race2, Katie Williams2
1Laboratory of Persistent Viral Diseases, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, Montana, USA carrollja2@niaid.nih.gov.
Abstract:
Microglial cells in the central nervous system play important roles in neurodevelopment and resistance to infection, yet microglia can become neurotoxic under some conditions. An early event during prion infection is the activation of microglia and astrocytes in the brain prior to damage or death of neurons. Previous prion disease studies using two different strategies to manipulate signaling through the microglial receptor CSF-1R reported contrary effects on survival from prion disease. However, in these studies, reductions of microglial numbers and function were variable, thus confounding interpretation of the results. In the present work, we used oral treatment with a potent inhibitor of CSF-1R, PLX5622, to eliminate 78 to 90% of microglia from cortex early during the course of prion infection. Oral drug treatment early after infection with the RML scrapie strain significantly accelerated vacuolation, astrogliosis, and deposition of disease-associated prion protein. Furthermore, drug-treated mice had advanced clinical disease requiring euthanasia 31 days earlier than untreated control mice. Similarly, PLX5622 treatment during the preclinical phase at 80 days postinfection with RML scrapie also accelerated disease and resulted in euthanasia of mice 33 days earlier than infected controls. PLX5622 also accelerated clinical disease after infection with scrapie strains ME7 and 22L. Thus, microglia are critical in host defense during prion disease. The early accumulation of PrPSc in the absence of microglia suggested that microglia may function by clearing PrPSc, resulting in longer survival.IMPORTANCE Microglia contribute to many aspects of health and disease. When activated, microglia can be beneficial by repairing damage in the central nervous system (CNS) or they can turn harmful by becoming neurotoxic. In prion and prionlike diseases, the involvement of microglia in disease is unclear. Previous studies suggest that microglia can either speed up or slow down disease. In this study, we infected mice with prions and depleted microglia from the brains of mice using PLX5622, an effective CSF-1R tyrosine kinase inhibitor. Microglia were markedly reduced in brains, and prion disease was accelerated, so that mice needed to be euthanized 20 to 33 days earlier than infected control mice due to advanced clinical disease. Similar results occurred when mice were treated with PLX5622 at 80 days after infection, which was just prior to the start of clinical signs. Thus, microglia are important for removing prions, and the disease is faster when microglia are depleted.
Insights
Microglia are crucial for fighting prion disease. Depleting microglia using PLX5622 accelerated prion disease progression and worsened symptoms, indicating microglia
Area of Science:
- Neuroscience
- Immunology
- Infectious Diseases
Background:
- Microglia, the resident immune cells of the central nervous system (CNS), play dual roles in neurodevelopment, infection resistance, and neurotoxicity.
- The role of microglia in prion diseases, such as Creutzfeldt-Jakob disease, remains controversial, with prior studies yielding conflicting results on their impact on disease progression.
- Previous attempts to modulate microglial activity via the colony-stimulating factor 1 receptor (CSF-1R) pathway produced variable outcomes due to inconsistent microglial depletion.
Purpose of the Study:
- To investigate the precise role of microglia in prion disease pathogenesis by utilizing a potent and specific CSF-1R inhibitor, PLX5622.
- To determine the effect of early and late-stage microglial depletion on the progression of prion infection in a mouse model.
Main Methods:
- Mice were infected with the RML scrapie strain of prion disease.
- Oral administration of PLX5622, a CSF-1R inhibitor, was used to deplete microglia (78-90%) in the cortex.
- Treatment was administered early post-infection and during the preclinical phase (80 days post-infection) for different scrapie strains (RML, ME7, 22L).
Main Results:
- Early microglial depletion significantly accelerated neuropathological hallmarks, including vacuolation, astrogliosis, and prion protein (PrPSc) deposition.
- PLX5622 treatment led to earlier onset of clinical signs and premature euthanasia, with mice succumbing 31-33 days earlier than controls.
- Accelerated disease progression was observed across multiple prion strains (RML, ME7, 22L) following microglial depletion.
Conclusions:
- Microglia are essential for host defense against prion infection, playing a critical role in limiting disease progression.
- The absence of microglia leads to accelerated accumulation of disease-associated prion protein (PrPSc) and faster disease advancement.
- These findings suggest that microglia contribute to host survival by actively clearing PrPSc, highlighting their neuroprotective function in prion diseases.
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