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Published on: November 9, 2018
In vivo uptake of β-amyloid by non-plaque associated microglia
Cheryl A Hawkes1, LeHua Deng, Daniela Fenili
1Centre for Research in Neurodegenerative Diseases, University of Toronto, Toronto, ON, Canada.
Abstract:
The role of microglia in β-amyloid (Aβ) deposition or clearance in the Alzheimer's disease (AD) brain remains unclear. Previous in vivo studies have focused primarily on the association of microglia with Aβ-positive parenchymal plaques, but have given little consideration to the possible interaction between Aβ and non-plaque associated microglia. Further, it is not known if microglia play a direct role in mediating Aβ uptake following anti-aggregant treatment. We report here the identification of Aβ-positive processes throughout the cortex and hippocampus of TgCRND8 mice expressing the human Swedish (KM670/671NL) and Indiana (V717F) amyloid precursor protein mutations, which localized to ionized calcium binding protein-1-positive resident microglia that were not associated with extracellular plaques. Oral administration of 1-deoxy-1-fluoro-scyllo-inositol, a scyllo-inositol analogue, to TgCRND8 mice improved spatial memory impairments and suppressed amyloid pathology in a dose-dependent manner. Further, treatment with 1-deoxy-1- fluoro-scyllo-inositol significantly increased hippocampal intra-microglial Aβ levels without stimulating microglial proliferation or peripheral macrophage recruitment. These results reveal a novel, beneficial role for non-plaque associated microglia in the regulation of cerebral Aβ levels in a mouse model of AD.
Insights
Microglia play a beneficial role in Alzheimer's disease by clearing amyloid-beta (Aβ). This study shows non-plaque microglia uptake Aβ, improving cognitive function and reducing pathology in a mouse model.
Area of Science:
- Neuroscience
- Immunology
- Alzheimer's Disease Research
Background:
- The function of microglia in Alzheimer's disease (AD) regarding amyloid-beta (Aβ) deposition and clearance is not fully understood.
- Prior research has concentrated on microglia associated with parenchymal plaques, neglecting interactions with non-plaque associated microglia.
- The direct role of microglia in mediating Aβ uptake after anti-amyloid treatment remains unknown.
Purpose of the Study:
- To investigate the role of non-plaque associated microglia in regulating cerebral Aβ levels in an Alzheimer's disease mouse model.
- To determine if microglia directly mediate Aβ uptake following treatment with an anti-amyloid compound.
Main Methods:
- TgCRND8 mice, which express mutations linked to familial Alzheimer's disease, were used to model amyloid pathology.
- Aβ-positive microglial processes were identified in the cortex and hippocampus using ionized calcium binding protein-1 (Iba1) staining.
- Mice were treated with 1-deoxy-1-fluoro-scyllo-inositol, and cognitive function, amyloid burden, and microglial responses were assessed.
Main Results:
- Aβ-positive microglial processes were found associated with microglia not adjacent to extracellular plaques.
- Treatment with 1-deoxy-1-fluoro-scyllo-inositol dose-dependently improved spatial memory and reduced amyloid pathology.
- The treatment increased intra-microglial Aβ levels in the hippocampus without promoting microglial proliferation or peripheral macrophage infiltration.
Conclusions:
- Non-plaque associated microglia play a previously unrecognized beneficial role in managing cerebral Aβ levels in a mouse model of AD.
- Microglia can directly mediate Aβ uptake following treatment with specific anti-amyloid agents.
- Targeting microglial Aβ uptake represents a potential therapeutic strategy for Alzheimer's disease.
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