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Updated: Aug 16, 2025

Cell-based Assay to Study Antibody-mediated Tau Clearance by Microglia
Published on: November 9, 2018
Amyloid-beta and tau pathologies act synergistically to induce novel disease stage-specific microglia subtypes
Dong Won Kim1, Kevin J Tu2, Alice Wei2
1Solomon H. Snyder Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, MD, 21205, USA.
Background:
Amongst risk alleles associated with late-onset Alzheimer's disease (AD), those that converged on the regulation of microglia activity have emerged as central to disease progression. Yet, how canonical amyloid-β (Aβ) and tau pathologies regulate microglia subtypes during the progression of AD remains poorly understood.
Methods:
We use single-cell RNA-sequencing to profile microglia subtypes from mice exhibiting both Aβ and tau pathologies across disease progression. We identify novel microglia subtypes that are induced in response to both Aβ and tau pathologies in a disease-stage-specific manner. To validate the observation in AD mouse models, we also generated a snRNA-Seq dataset from the human superior frontal gyrus (SFG) and entorhinal cortex (ERC) at different Braak stages.
Results:
We show that during early-stage disease, interferon signaling induces a subtype of microglia termed Early-stage AD-Associated Microglia (EADAM) in response to both Aβ and tau pathologies. During late-stage disease, a second microglia subtype termed Late-stage AD-Associated Microglia (LADAM) is detected. While similar microglia subtypes are observed in other models of neurodegenerative disease, the magnitude and composition of gene signatures found in EADAM and LADAM are distinct, suggesting the necessity of both Aβ and tau pathologies to elicit their emergence. Importantly, the pattern of EADAM- and LADAM-associated gene expression is observed in microglia from AD brains, during the early (Braak II)- or late (Braak VI/V)- stage of the disease, respectively. Furthermore, we show that several Siglec genes are selectively expressed in either EADAM or LADAM. Siglecg is expressed in white-matter-associated LADAM, and expression of Siglec-10, the human orthologue of Siglecg, is progressively elevated in an AD-stage-dependent manner but not shown in non-AD tauopathy.
Conclusions:
Using scRNA-Seq in mouse models bearing amyloid-β and/or tau pathologies, we identify novel microglia subtypes induced by the combination of Aβ and tau pathologies in a disease stage-specific manner. Our findings suggest that both Aβ and tau pathologies are required for the disease stage-specific induction of EADAM and LADAM. In addition, we revealed Siglecs as biomarkers of AD progression and potential therapeutic targets.
Insights
This study identifies novel microglia subtypes, Early-stage AD-Associated Microglia (EADAM) and Late-stage AD-Associated Microglia (LADAM), crucial for Alzheimer's disease (AD) progression. Siglec genes emerge as potential biomarkers for AD stages and therapeutic targets.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Late-onset Alzheimer's disease (AD) risk alleles often target microglia activity.
- The precise regulation of microglia subtypes by amyloid-beta (Aβ) and tau pathologies in AD remains unclear.
Purpose of the Study:
- To investigate how Aβ and tau pathologies influence microglia subtypes during AD progression.
- To identify novel microglia subtypes and their molecular signatures in AD.
Main Methods:
- Single-cell RNA-sequencing (scRNA-seq) was used to profile microglia from mouse models with Aβ and tau pathologies.
- scRNA-seq data from human superior frontal gyrus and entorhinal cortex across Braak stages were analyzed for validation.
Main Results:
- Two novel microglia subtypes, Early-stage AD-Associated Microglia (EADAM) and Late-stage AD-Associated Microglia (LADAM), were identified in a disease-stage-specific manner.
- EADAM and LADAM gene expression patterns in mice mirrored those found in human AD brains at corresponding Braak stages.
- Siglec genes, including Siglec-10, showed selective expression in EADAM/LADAM and were elevated in an AD-stage-dependent manner.
Conclusions:
- Both Aβ and tau pathologies are necessary for the stage-specific induction of EADAM and LADAM.
- Siglec genes represent potential biomarkers for AD progression and therapeutic targets.
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