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.

PubMed

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.