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Characterization and Isolation of Mouse Primary Microglia by Density Gradient Centrifugation
Published on: February 16, 2018
Microbial pathogens induce neurodegeneration in Alzheimer's disease mice: protection by microglial regulation
Tal Ganz1,2, Nina Fainstein1,2, Amit Elad1,2
1Faculty of Medicine, Hebrew University of Jerusalem, Jerusalem, Israel.
Background:
Neurodegeneration is considered the consequence of misfolded proteins' deposition. Little is known about external environmental effects on the neurodegenerative process. Infectious agent-derived pathogen-associated molecular patterns (PAMPs) activate microglia, key players in neurodegenerative diseases. We hypothesized that systemic microbial pathogens may accelerate neurodegeneration in Alzheimer's disease (AD) and that microglia play a central role in this process.
Methods:
We examined the effect of an infectious environment and of microbial Toll-like receptor (TLR) agonists on cortical neuronal loss and on microglial phenotype in wild type versus 5xFAD transgenic mice, carrying mutated genes associated with familial AD.
Results:
We examined the effect of a naturally bred environment on the neurodegenerative process. Earlier and accelerated cortical neuron loss occurred in 5xFAD mice housed in a natural ("dirty") environment than in a specific-pathogen-free (SPF) environment, without increasing the burden of Amyloid deposits and microgliosis. Neuronal loss occurred in a microglia-rich cortical region but not in microglia-poor CA regions of the hippocampus. Environmental exposure had no effect on cortical neuron density in wild-type mice. To model the neurodegenerative process caused by the natural infectious environment, we injected systemically the bacterial endotoxin lipopolysaccharide (LPS), a TLR4 agonist PAMP. LPS caused cortical neuronal death in 5xFAD, but not wt mice. We used the selective retinoic acid receptor α agonist Am580 to regulate microglial activation. In primary microglia isolated from 5xFAD mice, Am580 markedly attenuated TLR agonists-induced iNOS expression, without canceling their basic immune response. Intracerebroventricular delivery of Am580 in 5xFAD mice reduced significantly the fraction of (neurotoxic) iNOS + microglia and increased the fraction of (neuroprotective) TREM2 + microglia. Furthermore, intracerebroventricular delivery of Am580 prevented neurodegeneration induced by microbial TLR agonists.
Conclusions:
Exposure to systemic infections causes neurodegeneration in brain regions displaying amyloid pathology and high local microglia density. AD brains exhibit increased susceptibility to microbial PAMPs' neurotoxicity, which accelerates neuronal death. Microglial modulation protects the brain from microbial TLR agonist PAMP-induced neurodegeneration.
Insights
Systemic infections accelerate neurodegeneration in Alzheimer's disease (AD) models by activating microglia. Modulating microglial responses with Am580 protects against this infection-induced neuronal damage.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Neurodegeneration is linked to misfolded protein deposition.
- External environmental factors influencing neurodegeneration are poorly understood.
- Microglia, activated by pathogen-associated molecular patterns (PAMPs), are key players in neurodegenerative diseases.
Purpose of the Study:
- To investigate the hypothesis that systemic microbial pathogens accelerate neurodegeneration in Alzheimer's disease (AD).
- To determine the central role of microglia in this accelerated neurodegeneration process.
Main Methods:
- Examined the impact of an infectious environment and microbial Toll-like receptor (TLR) agonists on cortical neuron loss and microglial phenotype in 5xFAD transgenic mice and wild-type controls.
- Administered lipopolysaccharide (LPS) systemically to model infectious environmental effects.
- Utilized Am580, a retinoic acid receptor α agonist, to modulate microglial activation and assessed its neuroprotective effects.
Main Results:
- 5xFAD mice in a natural environment showed accelerated cortical neuron loss compared to those in a specific-pathogen-free environment.
- Systemic LPS injection induced cortical neuronal death in 5xFAD mice but not wild-type mice.
- Am580 treatment reduced neurotoxic iNOS+ microglia and increased neuroprotective TREM2+ microglia, preventing neurodegeneration induced by microbial TLR agonists.
Conclusions:
- Systemic infections exacerbate neurodegeneration in brain regions with amyloid pathology and high microglia density.
- Alzheimer's disease brains are more susceptible to microbial PAMPs, leading to accelerated neuronal death.
- Modulating microglial activity offers a protective strategy against PAMP-induced neurodegeneration.
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