Human monocyte-derived microglia-like cell models: A review of the benefits, limitations and recommendations

Timothy J Sargeant1, Célia Fourrier2

  • 1Lysosomal Health in Ageing, Hopwood Centre for Neurobiology, Lifelong Health Theme, South Australian Health and Medical Research Institute, North Terrace, Adelaide, South Australia, Australia.

Insights

Monocyte-derived microglia-like (MDMi) cells offer a scalable model for studying human microglia in health and disease. This review highlights their utility and need for protocol standardization in research.

Area of Science:

  • Neuroscience
  • Immunology
  • Cell Biology

Background:

  • Microglia play critical roles in health and disease, increasing interest in human microglia models.
  • Current models like primary microglia, cell lines, and iPSC-derived microglia have limitations for high-throughput and personalized studies.
  • There is a need for accessible and scalable models to study human microglia in diverse research applications.

Purpose of the Study:

  • To review monocyte-derived microglia-like (MDMi) cells as a viable model for human microglia research.
  • To discuss the protocols, validation, benefits, and limitations of MDMi cells compared to other models.
  • To summarize the application of MDMi models in advancing research on microglia in immune-related diseases.

Main Methods:

  • Review of existing literature on monocyte-derived microglia-like (MDMi) cell generation and application.
  • Comparative analysis of MDMi cells against primary human microglia, immortalized cell lines, and iPSC-derived microglia.
  • Summarization of data validating MDMi cells for studying human microglia in health and disease.

Main Results:

  • MDMi cells, derived from human monocytes, present a promising model for studying human microglia.
  • Existing protocols for MDMi cell generation vary, indicating a need for standardization.
  • MDMi cells offer advantages for moderate-throughput studies and personalized research compared to other models.

Conclusions:

  • MDMi cells are a valuable and validated model for investigating human microglia in various health and disease contexts.
  • Standardization of MDMi cell protocols is crucial for reproducibility and broader adoption.
  • This model facilitates advancements in understanding microglia's role in immune-related diseases and enables personalized drug screening.

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