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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
Microglia-like cells from patient monocytes demonstrate increased phagocytic activity in probable Alzheimer's disease
Ceren Perihan Gonul1, Cagla Kiser1, Emis Cansu Yaka2
1Izmir Biomedicine and Genome Center, Dokuz Eylul University Health Campus, Izmir, Türkiye; Izmir International Biomedicine and Genome Institute, Dokuz Eylul University, Izmir, Türkiye.
Abstract:
Alzheimer's disease (AD) is a neurodegenerative disorder that is characterized by the accumulation of amyloid plaques, phosphorylated tau tangles and microglia toxicity, resulting in neuronal death and cognitive decline. Since microglia are recognized as one of the key players in the disease, it is crucial to understand how microglia operate in disease conditions and incorporate them into models. The studies on human microglia functions are thought to reflect the post-symptomatic stage of the disease. Recently developed methods involve induced microglia-like cells (iMGs) generated from patients' blood monocytes or induced pluripotent stem cells (iPSCs) as an alternative to studying the microglia cells in vitro. In this research, we aimed to investigate the phenotype and inflammatory responses of iMGs from AD patients. Monocytes derived from blood using density gradient centrifugation were differentiated into iMGs using a cytokine cocktail, including granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin-34 (IL-34). After differentiation, cells were assessed by morphological analysis and a microglia surface marker, TMEM119. We used stimulants, lipopolysaccharide (LPS) and beta-amyloid, to examine iMGs' functions. Results showed that iMGs derived from AD patients exhibited increased secretion of pro-inflammatory cytokines upon LPS stimulation. Furthermore, their phagocytic ability was also heightened in stimulated and unstimulated conditions, with cells derived from patients showing increased phagocytic activity compared to healthy controls. Overall, these findings suggest that iMGs derived from patients using the direct conversion method possess characteristics of human microglia, making them an easy and promising model for studying microglia function in AD.
Insights
Induced microglia-like cells (iMGs) from Alzheimer's disease (AD) patients show heightened inflammatory responses and phagocytic activity. These iMGs offer a promising in vitro model for studying AD microglia function.
Area of Science:
- Neuroscience
- Immunology
- Stem Cell Biology
Background:
- Alzheimer's disease (AD) involves amyloid plaques, tau tangles, and microglia toxicity, leading to cognitive decline.
- Microglia are key players in AD pathogenesis, but studying human microglia in vitro is challenging.
- Induced microglia-like cells (iMGs) from patient monocytes offer a novel in vitro model.
Purpose of the Study:
- To investigate the phenotype and inflammatory responses of iMGs derived from AD patients.
- To assess the functional characteristics of AD patient-derived iMGs in response to stimuli.
Main Methods:
- Monocytes from AD patients were differentiated into iMGs using GM-CSF and IL-34.
- Cell morphology and the microglia marker TMEM119 were assessed.
- iMGs were stimulated with lipopolysaccharide (LPS) and beta-amyloid to examine inflammatory and phagocytic functions.
Main Results:
- AD patient-derived iMGs showed increased pro-inflammatory cytokine secretion upon LPS stimulation.
- Phagocytic activity was elevated in both stimulated and unstimulated AD iMGs compared to controls.
- iMGs exhibited characteristics of human microglia, validating their use as a model.
Conclusions:
- iMGs derived from AD patients recapitulate key aspects of microglial dysfunction in Alzheimer's disease.
- This direct conversion method provides a valuable and accessible in vitro model for AD research.
- Further studies using iMGs can elucidate microglia's role in AD pathogenesis and therapeutic strategies.
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