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Cell-based Assay to Study Antibody-mediated Tau Clearance by Microglia
Published on: November 9, 2018
Anti-Aβ antibodies bound to neuritic plaques enhance microglia activity and mitigate tau pathology
Vanessa Laversenne1, Sameer Nazeeruddin1, Emma C Källstig1
1Brain Mind Institute, Ecole Polytechnique Fédérale de Lausanne (EPFL), Station 19, 1015, Lausanne, Switzerland.
Abstract:
The brain pathology of Alzheimer's disease (AD) is characterized by the misfolding and aggregation of both the amyloid beta (Aβ) peptide and hyperphosphorylated forms of the tau protein. Initial Aβ deposition is considered to trigger a sequence of deleterious events contributing to tau pathology, neuroinflammation and ultimately causing the loss of synapses and neurons. To assess the effect of anti-Aβ immunization in this context, we generated a mouse model by overexpressing the human tau protein in the hippocampus of 5xFAD mice. Aβ plaque deposition combined with human tau overexpression leads to an array of pathological manifestations including the formation of tau-positive dystrophic neurites and accumulation of hyperphosphorylated tau at the level of neuritic plaques. Remarkably, the presence of human tau reduces microglial clustering in proximity to the Aβ plaques, which may affect the barrier role of microglia. In this mouse model, continuous administration of anti-Aβ antibodies enhances the clustering of microglial cells even in the presence of tau. Anti-Aβ immunization increases plaque compaction, reduces the spread of tau in the hippocampal formation and prevents the formation of tau-positive dystrophic neurites. However, the treatment does not significantly reduce tau-induced neurodegeneration in the dentate gyrus. These results highlight that anti-Aβ immunization is able to enhance microglial activity around neuritic plaques, mitigating part of the tau-induced pathological manifestations.
Insights
Anti-amyloid beta (Aβ) immunization in a mouse model enhances microglial activity, reducing tau pathology spread and neuritic plaque formation. However, it does not prevent tau-induced neurodegeneration in the dentate gyrus.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Alzheimer's disease (AD) involves amyloid beta (Aβ) and tau protein pathology.
- Aβ deposition triggers neuroinflammation and neuronal loss.
- Tau pathology exacerbates AD progression.
Purpose of the Study:
- To investigate the impact of anti-Aβ immunization on tau pathology in a novel AD mouse model.
- To assess microglial responses to Aβ plaques in the presence of tau.
Main Methods:
- Generated a mouse model overexpressing human tau in 5xFAD mice.
- Administered continuous anti-Aβ antibodies.
- Analyzed Aβ plaque deposition, tau pathology, microglial clustering, and neurodegeneration.
Main Results:
- Anti-Aβ immunization enhanced microglial clustering around plaques.
- Treatment compacted Aβ plaques and reduced tau spread and neuritic pathology.
- Neurodegeneration in the dentate gyrus remained unaffected by the treatment.
Conclusions:
- Anti-Aβ immunization modulates microglial activity, mitigating some tau-induced pathologies.
- Targeting Aβ may offer therapeutic benefits by influencing tau-related neuroinflammation.
- Further research is needed to address tau-induced neurodegeneration in AD.

