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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Brain-derived neurotrophic factor from microglia regulates neuronal development in the medial prefrontal cortex and
Takashi Komori1, Kazuya Okamura1, Minobu Ikehara1
1Department of Psychiatry, Nara Medical University, Kashihara, Nara, 634-8521, Japan.
Abstract:
Microglia and brain-derived neurotrophic factor (BDNF) are essential for the neuroplasticity that characterizes critical developmental periods. The experience-dependent development of social behaviors-associated with the medial prefrontal cortex (mPFC)-has a critical period during the juvenile period in mice. However, whether microglia and BDNF affect social development remains unclear. Herein, we aimed to elucidate the effects of microglia-derived BDNF on social behaviors and mPFC development. Mice that underwent social isolation during p21-p35 had increased Bdnf in the microglia accompanied by reduced adulthood sociability. Additionally, transgenic mice overexpressing microglial Bdnf-regulated using doxycycline at different time points-underwent behavioral, electrophysiological, and gene expression analyses. In these mice, long-term overexpression of microglial BDNF impaired sociability and excessive mPFC inhibitory neuronal circuit activity. However, administering doxycycline to normalize BDNF from p21 normalized sociability and electrophysiological function in the mPFC, whereas normalizing BDNF from later ages (p45-p50) did not normalize electrophysiological abnormalities in the mPFC, despite the improved sociability. To evaluate the possible role of BDNF in human sociability, we analyzed the relationship between adverse childhood experiences and BDNF expression in human macrophages, a possible proxy for microglia. Results show that adverse childhood experiences positively correlated with BDNF expression in M2 but not M1 macrophages. In summary, our study demonstrated the influence of microglial BDNF on the development of experience-dependent social behaviors in mice, emphasizing its specific impact on the maturation of mPFC function, particularly during the juvenile period. Furthermore, our results propose a translational implication by suggesting a potential link between BDNF secretion from macrophages and childhood experiences in humans.
Insights
Microglia-derived brain-derived neurotrophic factor (BDNF) is crucial for juvenile social development and medial prefrontal cortex (mPFC) maturation. Early intervention during this critical period is key for normalizing social behaviors and brain function.
Area of Science:
- Neuroscience
- Developmental Biology
- Behavioral Science
Background:
- Microglia and brain-derived neurotrophic factor (BDNF) are vital for neuroplasticity during development.
- Social behaviors, linked to the medial prefrontal cortex (mPFC), have a critical developmental window in juvenile mice.
- The specific roles of microglia and BDNF in social development are not fully understood.
Purpose of the Study:
- To investigate the impact of microglia-derived BDNF on social behaviors and mPFC development.
- To determine the critical timing for BDNF's influence on social behavior and neural function.
Main Methods:
- Social isolation paradigm in mice.
- Genetic manipulation of microglial BDNF expression using doxycycline-inducible transgenic mice.
- Behavioral assays (sociability tests).
- Electrophysiological recordings in the mPFC.
- Gene expression analysis.
- Analysis of BDNF expression in human macrophages correlating with adverse childhood experiences.
Main Results:
- Social isolation during the juvenile period increased microglial BDNF and reduced adult sociability.
- Long-term overexpression of microglial BDNF impaired sociability and mPFC inhibitory circuit activity.
- Normalizing BDNF from the juvenile period (p21) rescued sociability and mPFC function.
- Normalizing BDNF later (p45-p50) improved sociability but not mPFC electrophysiology.
- Adverse childhood experiences positively correlated with BDNF in M2 macrophages, suggesting a translational link.
Conclusions:
- Microglial BDNF significantly influences the development of experience-dependent social behaviors and mPFC maturation.
- The juvenile period is a critical window for microglial BDNF's impact on social development and neural function.
- Findings suggest a potential translational link between macrophage BDNF and human childhood experiences, highlighting BDNF's role in social development and mental health.
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