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Aβ and Inflammatory Stimulus Activate Diverse Signaling Pathways in Monocytic Cells: Implications in Retaining
Ekaterina Savchenko1, Tarja Malm1, Henna Konttinen1
1Department of Neurobiology, A.I.Virtanen Institute for Molecular Sciences, University of Eastern Finland Kuopio, Finland.
Abstract:
Background: Accumulation of amyloid β (Aβ) is one of the main hallmarks of Alzheimer's disease (AD). The enhancement of Aβ clearance may provide therapeutic means to restrict AD pathology. The cellular responses to different forms of Aβ in monocytic cells are poorly known. We aimed to study whether different forms of Aβ induce inflammatory responses in monocytic phagocytes and how Aβ may affect monocytic cell survival and function to retain phagocytosis in Aβ-laden environment. Methods: Monocytic cells were differentiated from bone marrow hematopoietic stem cells (HSC) in the presence of macrophage-colony stimulating factor. Monocytic cells were stimulated with synthetic Aβ42 and intracellular calcium responses were recorded with calcium imaging. The formation of reactive oxygen species (ROS), secretion of cytokines and cell viability were also assessed. Finally, monocytic cells were introduced to native Aβ deposits ex vivo and the cellular responses in terms of cell viability, pro-inflammatory activation and phagocytosis were determined. The ability of monocytic cells to phagocytose Aβ plaques was determined after intrahippocampal transplantation in vivo. Results: Freshly solubilized Aβ induced calcium oscillations, which persisted after removal of the stimulus. After few hours of aggregation, Aβ was not able to induce oscillations in monocytic cells. Instead, lipopolysaccharide (LPS) induced calcium responses divergent from Aβ-induced response. Furthermore, while LPS induced massive production of pro-inflammatory cytokines, neither synthetic Aβ species nor native Aβ deposits were able to induce pro-inflammatory activation of monocytic cells, contrary to primary microglia. Finally, monocytic cells retained their viability in the presence of Aβ and exhibited phagocytic activity towards native fibrillar Aβ deposits and congophilic Aβ plaques. Conclusion: Monocytic cells carry diverse cellular responses to Aβ and inflammatory stimulus LPS. Even though Aβ species cause specific responses in calcium signaling, they completely lack the ability to induce pro-inflammatory phenotype of monocytic cells. Monocytes retain their viability and function in Aβ-laden brain.
Insights
Monocytes can clear amyloid-beta (Aβ) in Alzheimer's disease (AD) without becoming inflammatory. These cells maintain viability and phagocytic function in Aβ-rich environments, offering therapeutic potential for AD.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Amyloid-beta (Aβ) accumulation is a key feature of Alzheimer's disease (AD).
- Understanding how monocytic cells respond to Aβ is crucial for developing therapies targeting Aβ clearance.
- The inflammatory potential and functional capacity of monocytes in Aβ-laden environments require further investigation.
Purpose of the Study:
- To investigate the inflammatory responses of monocytic cells to different forms of Aβ.
- To determine if Aβ affects monocytic cell survival and phagocytic function.
- To compare monocytic cell responses to Aβ with those induced by lipopolysaccharide (LPS).
Main Methods:
- Monocytic cells differentiated from hematopoietic stem cells were stimulated with synthetic and native Aβ species.
- Intracellular calcium responses, reactive oxygen species (ROS) production, cytokine secretion, and cell viability were assessed.
- Phagocytic activity and cellular responses were evaluated ex vivo and in vivo after transplantation.
Main Results:
- Synthetic Aβ induced transient calcium oscillations, while aggregated Aβ did not.
- Unlike LPS, neither synthetic nor native Aβ induced pro-inflammatory cytokine production in monocytic cells.
- Monocytic cells maintained viability and demonstrated phagocytosis of native Aβ deposits and plaques.
Conclusions:
- Monocytic cells exhibit distinct responses to Aβ compared to inflammatory stimuli like LPS.
- Aβ does not induce a pro-inflammatory phenotype in monocytic cells, despite affecting calcium signaling.
- Monocytes retain their viability and phagocytic function in the presence of Aβ, suggesting a role in AD pathology and potential therapeutic applications.
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