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Magnetic Isolation of Microglial Cells from Neonate Mouse for Primary Cell Cultures
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Neuroinflammation in the Developing Brain: Risk Factors, Involvement of Microglial Cells, and Implication for Early
Olivier Baud1,2, Marie Saint-Faust1
1From the Division of Neonatology and Pediatric Intensive Care, University Hospitals Geneva, Geneva, Switzerland.
Abstract:
Microglia cells, the resident macrophages of the central nervous system, are key actors for specific brain functions that are critical for development and health. Microglial reactivity and functions, even when immature, play a major role if the developing brain is subjected to abnormal perinatal events. Brain exposure to general anesthesia, surgery, or analgesic drugs during early infancy may adversely affect its maturation and plasticity after injury. A better understanding of the regulation of microglial activation in the developing brain and interactions with specific anesthetic drugs is expected to give novel insights into the mechanisms underlying their potential adverse effects. This review recapitulates the most frequent perinatal circumstances associated with exacerbated systemic inflammation and neuroinflammation together with the double-edged role of microglia associated with subsequent brain damage. A role for microglial reactivity in both potential anesthetic toxicity and neuroprotection is emerging. However, further preclinical experiments are needed to better understand regulatory mechanisms of the developing microglia, and interaction between anesthesia and neuroinflammation in the developing brain.
Insights
Microglia, crucial immune cells in the developing brain, can be harmed by perinatal events and anesthesia. Understanding their reactivity is key to preventing potential adverse effects from early-life exposures.
Area of Science:
- Neuroscience
- Developmental Biology
- Immunology
Background:
- Microglia are vital for brain development and health.
- Immature microglia are sensitive to perinatal insults, impacting brain maturation and plasticity.
- Early-life exposure to anesthesia, surgery, or analgesics may negatively affect brain development.
Purpose of the Study:
- To review perinatal factors causing neuroinflammation.
- To explore the dual role of microglia in brain injury and protection.
- To investigate the impact of anesthesia on developing microglia.
Main Methods:
- Literature review of perinatal events and neuroinflammation.
- Analysis of microglial function in the developing brain.
- Examination of anesthesia's effects on microglial activation.
Main Results:
- Perinatal events can exacerbate systemic inflammation and neuroinflammation.
- Microglial reactivity plays a complex role in both anesthetic toxicity and neuroprotection.
- Anesthesia's interaction with developing microglia and neuroinflammation is not fully understood.
Conclusions:
- Developing microglia are central to understanding adverse effects of early-life exposures.
- Further preclinical research is essential to elucidate regulatory mechanisms and anesthesia interactions.
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