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Updated: Jul 16, 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
Angiogenic and inflammatory responses in human induced microglia-like (iMG) cells from patients with Moyamoya disease
Noritoshi Shirozu1, Masahiro Ohgidani2,3, Nobuhiro Hata1
1Department of Neurosurgery, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Abstract:
Angiogenic factors associated with Moyamoya disease (MMD) are overexpressed in M2 polarized microglia in ischemic stroke, suggesting that microglia may be involved in the pathophysiology of MMD; however, existing approaches are not applicable to explore this hypothesis. Herein we applied blood induced microglial-like (iMG) cells. We recruited 25 adult patients with MMD and 24 healthy volunteers. Patients with MMD were subdivided into progressive (N = 7) or stable (N = 18) group whether novel symptoms or radiographic advancement of Suzuki stage within 1 year was observed or not. We produced 3 types of iMG cells; resting, M1-, and M2-induced cells from monocytes, then RNA sequencing followed by GO and KEGG pathway enrichment analysis and qPCR assay were performed. RNA sequencing of M2-induced iMG cells revealed that 600 genes were significantly upregulated (338) or downregulated (262) in patients with MMD. Inflammation and immune-related factors and angiogenesis-related factors were specifically associated with MMD in GO analysis. qPCR for MMP9, VEGFA, and TGFB1 expression validated these findings. This study is the first to demonstrate that M2 microglia may be involved in the angiogenic process of MMD. The iMG technique provides a promising approach to explore the bioactivity of microglia in cerebrovascular diseases.
Insights
Microglia, specifically M2-polarized cells, may play a role in Moyamoya disease (MMD) by influencing angiogenesis. This study utilized induced microglial-like (iMG) cells to investigate this potential link in MMD patients.
Area of Science:
- Neuroscience
- Immunology
- Vascular Biology
Background:
- Moyamoya disease (MMD) pathophysiology involves angiogenic factors overexpressed in M2 polarized microglia.
- Current methods are insufficient to explore microglia's role in MMD.
Purpose of the Study:
- To investigate the involvement of M2 microglia in the angiogenic process of Moyamoya disease.
- To establish a novel approach using induced microglial-like (iMG) cells for studying MMD.
Main Methods:
- Recruited 25 adult MMD patients and 24 healthy volunteers.
- Generated resting, M1-, and M2-induced iMG cells from monocytes.
- Performed RNA sequencing, Gene Ontology (GO) analysis, KEGG pathway analysis, and qPCR.
Main Results:
- RNA sequencing of M2-iMG cells from MMD patients revealed significant gene expression changes (338 upregulated, 262 downregulated).
- GO analysis identified inflammation, immune response, and angiogenesis-related factors associated with MMD.
- qPCR confirmed the expression of MMP9, VEGFA, and TGFB1.
Conclusions:
- This study provides the first evidence suggesting M2 microglia involvement in Moyamoya disease angiogenesis.
- The iMG cell technique offers a promising avenue for exploring microglial bioactivity in cerebrovascular diseases.
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