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Updated: Aug 5, 2026

Detection of Neuritic Plaques in Alzheimer's Disease Mouse Model
Published on: July 26, 2011
INPP5D expression is associated with risk for Alzheimer's disease and induced by plaque-associated microglia
Andy P Tsai1, Peter Bor-Chian Lin1, Chuanpeng Dong2
1Stark Neurosciences Research Institute, IUSM, Indianapolis, IN, USA.
Abstract:
Alzheimer's disease (AD) is a progressive neurodegenerative disorder characterized by cognitive decline, robust microgliosis, neuroinflammation, and neuronal loss. Genome-wide association studies recently highlighted a prominent role for microglia in late-onset AD (LOAD). Specifically, inositol polyphosphate-5-phosphatase (INPP5D), also known as SHIP1, is selectively expressed in brain microglia and has been reported to be associated with LOAD. Although INPP5D is likely a crucial player in AD pathophysiology, its role in disease onset and progression remains unclear. We performed differential gene expression analysis to investigate INPP5D expression in AD and its association with plaque density and microglial markers using transcriptomic (RNA-Seq) data from the Accelerating Medicines Partnership for Alzheimer's Disease (AMP-AD) cohort. We also performed quantitative real-time PCR, immunoblotting, and immunofluorescence assays to assess INPP5D expression in the 5xFAD amyloid mouse model. Differential gene expression analysis found that INPP5D expression was upregulated in LOAD and positively correlated with amyloid plaque density. In addition, in 5xFAD mice, Inpp5d expression increased as the disease progressed, and selectively in plaque-associated microglia. Increased Inpp5d expression levels in 5xFAD mice were abolished entirely by depleting microglia with the colony-stimulating factor receptor-1 antagonist PLX5622. Our findings show that INPP5D expression increases as AD progresses, predominantly in plaque-associated microglia. Importantly, we provide the first evidence that increased INPP5D expression might be a risk factor in AD, highlighting INPP5D as a potential therapeutic target. Moreover, we have shown that the 5xFAD mouse model is appropriate for studying INPP5D in AD.
Insights
Inositol polyphosphate-5-phosphatase (INPP5D) increases in Alzheimer's disease (AD) brain microglia, particularly near plaques. This suggests INPP5D is a potential therapeutic target for AD progression.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Alzheimer's disease (AD) involves cognitive decline, microgliosis, and neuroinflammation.
- Microglia play a key role in late-onset AD (LOAD).
- Inositol polyphosphate-5-phosphatase (INPP5D/SHIP1) is expressed in brain microglia and linked to LOAD, but its role is unclear.
Purpose of the Study:
- To investigate INPP5D expression in AD and its association with disease pathology.
- To determine if INPP5D is a risk factor or therapeutic target in Alzheimer's disease.
Main Methods:
- Differential gene expression analysis of RNA-Seq data from the AMP-AD cohort.
- Quantitative real-time PCR, immunoblotting, and immunofluorescence in the 5xFAD mouse model.
- Microglia depletion using PLX5622 in 5xFAD mice.
Main Results:
- INPP5D expression is upregulated in LOAD and correlates with amyloid plaque density.
- In 5xFAD mice, Inpp5d expression increases with disease progression, specifically in plaque-associated microglia.
- Microglia depletion abolished the increased Inpp5d expression in 5xFAD mice.
Conclusions:
- INPP5D expression rises with AD progression, primarily in microglia near plaques.
- Increased INPP5D may be an AD risk factor, identifying it as a potential therapeutic target.
- The 5xFAD mouse model is suitable for studying INPP5D in Alzheimer's disease.
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