Related Experiment Video
Updated: Jul 24, 2025

Assessing Microglial Phagocytosis of Myelin Debris in vitro Under Repeated Magnetic Stimulation
Published on: June 17, 2025
Microglia and cognitive impairment in schizophrenia: translating scientific progress into novel therapeutic
Chuanjun Zhuo1,2,3,4, Hongjun Tian5, Xueqin Song6,7,8
1Key Laboratory of Sensory Information Processing Abnormalities in Schizophrenia (SIPAS-Lab), Nankai University Affiliated Tianjin Fourth Center Hospital, Tianjin Medical University Affiliated Tianjin Fourth Center Hospital, Tianjin Fourth Center Hospital, Tianjin, China. chuanjunzhuotjmh@163.com.
Abstract:
Cognitive impairment is a core clinical feature of schizophrenia, exerting profound adverse effects on social functioning and quality of life in a large proportion of patients with schizophrenia. However, the mechanisms underlying the pathogenesis of schizophrenia-related cognitive impairment are not well understood. Microglia, the primary resident macrophages in the brain, have been shown to play important roles in psychiatric disorders, including schizophrenia. Increasing evidence has revealed excessive microglial activation in cognitive deficits related to a broad range of diseases and medical conditions. Relative to that about age-related cognitive deficits, current knowledge about the roles of microglia in cognitive impairment in neuropsychiatric disorders, such as schizophrenia, is limited, and such research is in its infancy. Thus, we conducted this review of the scientific literature with a focus on the role of microglia in schizophrenia-associated cognitive impairment, aiming to gain insight into the roles of microglial activation in the onset and progression of such impairment and to consider how scientific advances could be translated to preventive and therapeutic interventions. Research has demonstrated that microglia, especially those in the gray matter of the brain, are activated in schizophrenia. Upon activation, microglia release key proinflammatory cytokines and free radicals, which are well-recognized neurotoxic factors contributing to cognitive decline. Thus, we propose that the inhibition of microglial activation holds potential for the prevention and treatment of cognitive deficits in patients with schizophrenia. This review identifies potential targets for the development of new treatment strategies and eventually the improvement of care for these patients. It might also help psychologists and clinical investigators in planning future research.
Insights
Microglia activation in schizophrenia contributes to cognitive impairment. Inhibiting this process may offer new treatments for schizophrenia-associated cognitive deficits.
Area of Science:
- Neuroscience
- Psychiatry
- Immunology
Background:
- Cognitive impairment significantly impacts schizophrenia patients' quality of life.
- The precise mechanisms behind schizophrenia-related cognitive deficits remain unclear.
- Microglia, brain-resident immune cells, are implicated in various psychiatric disorders.
Purpose of the Study:
- To review the literature on the role of microglia in schizophrenia-associated cognitive impairment.
- To understand how microglial activation contributes to cognitive decline in schizophrenia.
- To explore potential therapeutic targets for preventing and treating these deficits.
Main Methods:
- Literature review focusing on microglial activation in schizophrenia.
- Analysis of studies examining microglial roles in cognitive deficits.
- Synthesis of evidence linking microglial activity to neuroinflammation and cognitive decline.
Main Results:
- Microglial activation, particularly in gray matter, is observed in schizophrenia patients.
- Activated microglia release pro-inflammatory cytokines and free radicals, contributing to neurotoxicity.
- This activation is linked to cognitive decline in schizophrenia.
Conclusions:
- Microglial activation is a key factor in schizophrenia-associated cognitive impairment.
- Inhibiting microglial activation presents a promising therapeutic strategy.
- Further research can identify specific targets for novel treatments to improve patient care.
More Related Videos
07:54Rapid and Refined CD11b Magnetic Isolation of Primary Microglia with Enhanced Purity and Versatility
Published on: April 13, 2017
06:12Author Spotlight: Induced Microglia-Like Cell Technology to Shed Light on the Role of Microglial Dysfunction in Neuropsychiatric Disorders
Published on: September 6, 2024
Related Concept Videos
Alzheimer's Disease: Treatment
Cognitive Enhancers: Cholinesterase Inhibitors and NMDA Receptor Antagonists