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Updated: Aug 7, 2026

Transplantation of Human Induced Pluripotent Stem Cell-Derived Microglia in Immunocompetent Mice Brain via Non-Invasive Transnasal Route
Published on: May 31, 2022
Forward programming human pluripotent stem cells into microglia
Júlia Csatári1, Heinz Wiendl1, Matthias Pawlowski1
1Department of Neurology with Institute of Translational Neurology, University Hospital Münster, Albert-Schweitzer-Campus 1, Building A1, 48149 Münster, Germany.
Abstract:
Microglia play vital roles in embryonic and post-natal development, homeostasis, and pathogen defence in the central nervous system. Human induced pluripotent stem cell (hiPSC)-based methods have emerged as an important source for the study of human microglia in vitro. Classical approaches to differentiate hiPSCs into microglia suffer from limitations including extended culture periods, consistency, and efficiency. More recently, forward programming has arisen as a promising alternative for the manufacture of bulk quantities of human microglia. This review provides a comprehensive assessment of published forward programming protocols that are based on forced expression of key lineage transcription factors (TFs). We focus on the choice of reprogramming factors, transgene delivery methods, and medium composition, which impact induction kinetics and the resulting microglia phenotype.
Insights
Forward programming offers a faster, more efficient method for generating human microglia from stem cells. This review assesses protocols using transcription factors to optimize microglia production for research.
Area of Science:
- Neuroscience
- Stem Cell Biology
- Immunology
Background:
- Microglia are crucial for central nervous system development, homeostasis, and defense.
- Human induced pluripotent stem cells (hiPSCs) are a valuable in vitro model for microglia research.
- Traditional hiPSC differentiation methods are slow, inconsistent, and inefficient.
Purpose of the Study:
- To review and assess forward programming protocols for human microglia generation.
- To analyze the impact of transcription factors, delivery methods, and media on microglia induction.
- To identify optimal strategies for efficient, large-scale human microglia production.
Main Methods:
- Comprehensive literature review of published forward programming protocols.
- Analysis of protocols based on forced expression of key lineage transcription factors (TFs).
- Evaluation of reprogramming factors, transgene delivery techniques, and medium compositions.
Main Results:
- Forward programming emerges as a promising alternative for bulk human microglia generation.
- Key factors influencing induction kinetics and microglia phenotype include TF choice, delivery, and media.
- Optimized protocols can overcome limitations of traditional differentiation methods.
Conclusions:
- Forward programming provides an efficient route to generate human microglia from hiPSCs.
- Understanding the impact of specific protocol components is key to optimizing microglia production.
- This approach facilitates robust in vitro studies of human microglia function and disease.
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