Chronic Amyloid β Oligomer Infusion Evokes Sustained Inflammation and Microglial Changes in the Rat Hippocampus via
Csaba Fekete1, Csaba Vastagh2, Ádám Dénes3
1Department of Endocrine Neurobiology, Institute of Experimental Medicine, Hungarian Academy of Sciences, Budapest, Hungary; Department of Medicine, Division of Endocrinology, Diabetes and Metabolism, Tupper Research Institute, Tufts Medical Center, Boston, MA 02111, USA.
Abstract:
Microglia are instrumental for recognition and elimination of amyloid β1-42 oligomers (AβOs), but the long-term consequences of AβO-induced inflammatory changes in the brain are unclear. Here, we explored microglial responses and transciptome-level inflammatory signatures in the rat hippocampus after chronic AβO challenge. Middle-aged Long Evans rats received intracerebroventricular infusion of AβO or vehicle for 4 weeks, followed by treatment with artificial CSF or MCC950 for the subsequent 4 weeks. AβO infusion evoked a sustained inflammatory response including activation of NF-κB, triggered microglia activation and increased the expression of pattern recognition and phagocytic receptors. Aβ1-42 plaques were not detectable likely due to microglial elimination of infused oligomers. In addition, we found upregulation of neuronal inhibitory ligands and their cognate microglial receptors, while downregulation of Esr1 and Scn1a, encoding estrogen receptor alpha and voltage-gated sodium-channel Na(v)1.1, respectively, was observed. These changes were associated with impaired hippocampus-dependent spatial memory and resembled early neurological changes seen in Alzheimer's disease. To investigate the role of inflammatory actions in memory deterioration, we performed MCC950 infusion, which specifically blocks the NLRP3 inflammasome. MCC950 attenuated AβO-evoked microglia reactivity, restored expression of neuronal inhibitory ligands, reversed downregulation of ERα, and abolished memory impairments. Furthermore, MCC950 abrogated AβO-invoked reduction of serum IL-10. These findings provide evidence that in response to AβO infusion microglia change their phenotype, but the resulting inflammatory changes are sustained for at least one month after the end of AβO challenge. Lasting NLRP3-driven inflammatory alterations and altered hippocampal gene expression contribute to spatial memory decline.
Insights
Chronic amyloid-beta exposure triggers sustained microglial inflammation, impairing memory. Blocking NLRP3 inflammasome with MCC950 reverses these effects, restoring memory function.
Area of Science:
- Neuroscience
- Immunology
- Alzheimer's Disease Research
Background:
- Microglia are crucial for clearing amyloid-beta oligomers (AβOs), but long-term inflammatory consequences remain unclear.
- Chronic AβO challenge in rats reveals sustained microglial activation and altered gene expression in the hippocampus.
- These changes resemble early neurological deficits observed in Alzheimer's disease (AD).
Purpose of the Study:
- To investigate microglial responses and inflammatory signatures in the rat hippocampus following chronic AβO challenge.
- To explore the role of NLRP3 inflammasome in AβO-induced memory impairment.
- To assess the therapeutic potential of NLRP3 inhibition in mitigating AβO-related neurological deficits.
Main Methods:
- Middle-aged rats received chronic intracerebroventricular AβO infusion followed by vehicle or MCC950 treatment.
- Microglial activation, inflammatory markers (NF-κB), receptor expression, and gene expression (Esr1, Scn1a) were analyzed.
- Hippocampus-dependent spatial memory was assessed, and serum IL-10 levels were measured.
Main Results:
- AβO infusion induced sustained microglial activation, NF-κB signaling, and altered expression of recognition/phagocytic receptors.
- Downregulation of estrogen receptor alpha (ERα) and Na(v)1.1, alongside impaired spatial memory, was observed.
- MCC950 treatment attenuated microglial reactivity, restored gene expression, abolished memory deficits, and normalized serum IL-10.
Conclusions:
- Sustained microglial inflammatory changes, driven by NLRP3 inflammasome activation, persist for at least one month post-AβO challenge.
- These lasting inflammatory alterations and altered hippocampal gene expression contribute significantly to spatial memory decline.
- Targeting the NLRP3 inflammasome with MCC950 offers a promising therapeutic strategy for AβO-induced cognitive impairment.
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