Related Experiment Video
Updated: Aug 26, 2025

Author Spotlight: Induced Microglia-Like Cell Technology to Shed Light on the Role of Microglial Dysfunction in Neuropsychiatric Disorders
Published on: September 6, 2024
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.
Abstract:
In the last few decades, mounting evidence has highlighted that microglia have crucial roles in both health and disease. This has led to a growing interest in studying human microglia in disease-relevant models. However, current models present limitations that can make them unsuitable for moderate throughput studies in human cohorts. Primary human microglia are ethically and technically difficult to obtain and only allow low throughput studies; immortalized cell lines have been shown to differ too greatly from primary human microglia; and induced pluripotent stem cell-derived microglia, although physiologically relevant in most contexts, have limited potential for use in large cohorts of people or for personalised drug screening. In this review, we discuss monocyte-derived microglia-like (MDMi) cells, a model that has been developed and increasingly used in the last decade, using human monocytes isolated from blood samples. We describe the variety of protocols that have been used to develop MDMi cell models and highlight a need for standardization across protocols. We then summarize data that validate MDMi cells as an appropriate model to study human microglia in health and disease. We also present the benefits and limitations of using this approach to study human microglia compared with other microglial models, when used in combination with the relevant downstream applications and with cross-validation of findings in other systems. Finally, we summarize the paradigms in which MDMi models have been used to advance research on microglia in immune-related disease. This review is an important reference for scientists who seek to establish MDMi cells as a microglial model for the advancement of our understanding of microglia in human health and disease.
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.
More Related Videos
11:19Human Microglia-like Cells: Differentiation from Induced Pluripotent Stem Cells and In Vitro Live-cell Phagocytosis Assay using Human Synaptosomes
Published on: August 18, 2022
05:35Transplantation of Human Induced Pluripotent Stem Cell-Derived Microglia in Immunocompetent Mice Brain via Non-Invasive Transnasal Route
Published on: May 31, 2022