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Quantitative 3D In Silico Modeling q3DISM of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Cytokine-producing microglia have an altered beta-amyloid load in aged APP/PS1 Tg mice
Alicia A Babcock1, Laura Ilkjær1, Bettina H Clausen1
1Institute of Molecular Medicine, University of Southern Denmark, JB Winsløws Vej 25, 2, 5000 Odense C, Denmark.
Abstract:
Beta-amyloid (Aβ) plaques and chronic neuroinflammation are significant neuropathological features of Alzheimer's disease. Microglial cells in aged brains have potential to produce cytokines such as TNF and IL-1 family members (IL-1α, IL-1β, and IL-1Ra) and to phagocytose Aβ in Alzheimer's disease, however the inter-relationship between these processes is poorly understood. Here we show that % Aβ plaque load followed a sigmoidal trajectory with age in the neocortex of APPswe/PS1ΔE9 Tg mice, and correlated positively with soluble Aβ40 and Aβ42. Aβ measures were moderately correlated with mRNA levels of CD11b, TNF, and IL-1Ra. Cytokine production and Aβ load were assessed in neocortical CD11b(+)(CD45(+)) microglia by flow cytometry. Whereas most microglia in aged mice produced IL-1Ra, relatively low proportions of microglia produced TNF, IL-1α, and IL-1β. However, microglial production of these latter cytokines was generally increased in APP/PS1 Tg mice. Microglia that phagocytosed endogenously-produced Aβ were only observed in APP/PS1 Tg mice. Differences in phagocytic index and total Aβ load were observed in microglia with specific cytokine profiles. Both phagocytic index and total Aβ load were higher in IL-1α(+) and IL-1Ra(+) microglia, than microglia that did not produce these cytokines. In contrast, total Aβ load was lower in IL-1β(+) and TNF(+) microglia, compared to IL-1β(-) and TNF(-) microglia, and TNF(+) microglia also had a lower phagocytic index. Using GFP bone marrow chimeric mice, we confirmed that the majority of neocortical CD11b(+)(CD45(+)) microglia were resident cells (GFP(-)) in APP/PS1 Tg mice, even after selectively analysing CD11b(+)CD45(high) cells, which are typically considered to be infiltrating cells. Together, our data demonstrate that cytokine expression is selectively correlated with age and Aβ pathology, and is associated with an altered Aβ load in phagocytic microglia from APP/PS1 Tg mice. These findings have implications for understanding the regulation of microglial cytokine production and phagocytosis of Aβ in Alzheimer's disease.
Insights
This study reveals how microglial cells in Alzheimer's disease models produce cytokines and phagocytose beta-amyloid (Aβ) plaques. Specific cytokine profiles in microglia are linked to altered Aβ load and phagocytosis, impacting disease pathology.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Alzheimer's disease (AD) is characterized by beta-amyloid (Aβ) plaques and neuroinflammation.
- Microglia, the brain's immune cells, play a role in AD by producing cytokines and phagocytosing Aβ.
- The interplay between microglial cytokine production and Aβ phagocytosis in AD remains poorly understood.
Purpose of the Study:
- To investigate the relationship between microglial cytokine production and Aβ plaque load in an AD mouse model.
- To determine how specific cytokine profiles affect microglial phagocytosis of Aβ.
- To characterize the microglial populations involved in Aβ pathology in the AD brain.
Main Methods:
- Utilized APPswe/PS1ΔE9 transgenic mice and GFP bone marrow chimeric mice.
- Assessed Aβ plaque load and soluble Aβ levels using quantitative measures.
- Quantified cytokine production (TNF, IL-1α, IL-1β, IL-1Ra) and Aβ phagocytosis in neocortical microglia via flow cytometry.
Main Results:
- Aβ plaque load exhibited a sigmoidal increase with age and correlated with soluble Aβ.
- Microglial production of TNF, IL-1α, and IL-1β was elevated in APP/PS1 mice compared to controls.
- Microglia with IL-1α and IL-1Ra expression showed higher Aβ load and phagocytic index, while IL-1β and TNF expression correlated with lower Aβ load and phagocytic activity.
Conclusions:
- Microglial cytokine expression is selectively associated with age and Aβ pathology in AD.
- Specific microglial cytokine profiles influence their capacity for Aβ phagocytosis and overall Aβ burden.
- These findings offer insights into the complex regulation of microglial functions in Alzheimer's disease pathogenesis.

