Maternal immune activation causes sex-specific impairment of microglial function during prefrontal cortex development
- Brain Behav Immun. 2026 Aug:136:106770. doi: 10.1016/j.bbi.2026.106770.
- 1. Institute of Mental Health and Drug Discovery, Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), School of Psychiatry, Wenzhou Medical University, Wenzhou, Zhejiang, 325000, China.
- 2. Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health, Toronto, Ontario M5T 1R8, Canada.
- 3. Institute of Mental Health and Drug Discovery, Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), School of Psychiatry, Wenzhou Medical University, Wenzhou, Zhejiang, 325000, China; Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health, Toronto, Ontario M5T 1R8, Canada; Institute of Medical Science, University of Toronto, Canada; Departments of Pharmacology and Toxicology, University of Toronto, Canada; Departments of Psychiatry, University of Toronto, Canada; Departments of Physiology, University of Toronto, Canada. Electronic address: [email protected].
Gestational maternal immune activation (MIA) has been recognized as a risk factor for neurodevelopmental disorders (NDDs) later in life. Furthermore, sex is a significant modifying factor for NDDs. Microglia, the resident immune cells of the brain, appear to be critical mediators of MIA-associated NDD pathology and are known to play a pivotal role in the pathological process of MIA-induced behavioral abnormalities. However, the exact mechanisms linking microglial perturbations to neurodevelopmental abnormalities in adult MIA offspring remain unclear. Here, we demonstrated that MIA induced sex-specific behavioral deficits in male offspring. Bulk RNA Sequencing revealed pronounced transcriptional dysregulation related to synaptic transmission and immune responses specifically in males. Single-cell RNA Sequencing further indicated that MIA blunted microglial reactivity in the developing prefrontal cortex (PFC) of male offspring. Consistently, further validation confirmed that MIA led to sex-specific synaptic pruning deficits, accompanied by a reduction in the number of proliferating microglia specifically in males during PFC development. As a consequence, male MIA offspring exhibited increased synaptic protein levels in the PFC. Our findings show that impaired microglial activity may contribute to sex-biased neurodevelopmental abnormalities induced by MIA, providing new insights into the neuroimmune mechanisms underlying NDDs.
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target: Fluorescent DyeResearch Areas: Others