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Updated: Aug 11, 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
A molecular characterization and clinical relevance of microglia-like cells derived from patients with panic disorder
Min-Jung You1, Chan Rim1, Minji Bang2
1Department of Pharmacology, Research Institute for Basic Medical Science, School of Medicine, CHA University, CHA BIO COMPLEX, 335 Pangyo, Bundang-Gu, Seongnam-si, Gyeonggi-do, 13488, Republic of Korea.
Abstract:
Few studies report the microglia involvement in the pathogenesis of panic disorder (PD), although the crucial role of microglia in other neuropsychiatric diseases is being emphasized. In addition, there is no report to characterize the phenotypic and functional levels of PD patient-derived microglia to find their clinical relevance. Herein, we used a model to induce patient-derived microglia-like cells (iMGs) to clarify the molecular characteristics and function of PD-iMGs. We established iMGs from 17 PD patients and 16 healthy controls (non-psychiatric controls, HC). PD-iMGs showed increased T-cell death-associated gene-8 expression per the proposal of a previous in vivo study. In addition, we found that patient-derived iMGs showed reduced phagocytosis and increased TREM2 expression. We analyzed the phenotype of the PD-iMGs by RNA sequencing. The PD-iMGs clustered together distinct from HC-iMGs. Gene set enrichment analysis revealed the involvement of cholesterol biosynthesis and steroid metabolism in PD-iMGs. Regarding the cholesterol synthesis pathway, we discovered ACAT2 and DHCR7 as the most impacted genes related to a character of PD-iMGs compared to HC-iMGs. The ACAT2, a major cholesterol esterifier, was increased in PD-iMGs. Nevertheless, PD-iMGs did not show lipid droplet accumulation. Interestingly, ACAT2 expression was inversely correlated with the severity of depression and anxiety sensitivity to publicly observable anxiety reactions. We propose that microglia of PD patients have unique characteristics with dysregulation of cholesterol biosynthesis pathway and impaired phagocytosis, reflecting clinical phenotype.
Insights
Microglia in panic disorder (PD) show altered cholesterol metabolism and reduced phagocytosis. These unique PD microglia characteristics correlate with depression and anxiety severity, suggesting a role in PD pathogenesis.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Microglia, the immune cells of the brain, are implicated in various neuropsychiatric disorders.
- Their specific role and characteristics in panic disorder (PD) remain largely uncharacterized.
- Understanding PD microglia could reveal novel therapeutic targets.
Purpose of the Study:
- To investigate the molecular and functional characteristics of microglia derived from PD patients.
- To explore the clinical relevance of these PD-patient-derived microglia.
- To identify specific molecular pathways dysregulated in PD microglia.
Main Methods:
- Generation of microglia-like cells (iMGs) from 17 PD patients and 16 healthy controls (HC).
- Assessment of gene expression (e.g., T-cell death-associated gene-8, TREM2, ACAT2, DHCR7) and cellular functions (phagocytosis).
- RNA sequencing and gene set enrichment analysis to characterize PD-iMG phenotypes.
Main Results:
- PD-iMGs exhibited increased T-cell death-associated gene-8 and TREM2 expression compared to HC-iMGs.
- Reduced phagocytic capacity was observed in PD-iMGs.
- RNA sequencing revealed distinct clustering of PD-iMGs, implicating dysregulated cholesterol biosynthesis and steroid metabolism pathways, notably increased ACAT2 expression.
- ACAT2 levels inversely correlated with depression and anxiety severity.
Conclusions:
- Microglia in PD patients possess unique molecular and functional characteristics.
- Dysregulation of the cholesterol biosynthesis pathway and impaired phagocytosis are key features of PD microglia.
- These findings suggest a potential link between microglia dysfunction, cholesterol metabolism, and the clinical presentation of panic disorder.

