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Updated: May 19, 2026

Administration of Volatile Anesthetics to Zebrafish Larvae for Behavioral Observation
Published on: June 6, 2025
Multiple sevoflurane exposures in early development lead to long-term vascular abnormalities in the hippocampus
Yu Matsumoto1,2, Kazue Hashimoto-Torii1,3, Masaaki Torii4,5
1Center for Neuroscience Research, Children's Research Institute, Children's National Hospital, 111 Michigan Avenue, N.W., Washington, DC, 20010-2970, USA.
Insights
Repeated early anesthesia exposure, like sevoflurane, can harm children's brain development. This study found it damages hippocampal blood vessels, potentially linked to inflammation, suggesting ways to protect against neurodevelopmental risks.
Area of Science:
- Neuroscience
- Pediatric Anesthesiology
- Vascular Biology
Background:
- Multiple anesthetic exposures in children are linked to neurocognitive impairments.
- Anesthesia-induced neurotoxicity is suspected but long-term mechanisms are unclear.
Purpose of the Study:
- To investigate the long-term effects of early-life sevoflurane exposure on hippocampal vascular architecture.
- To elucidate the mechanisms underlying anesthesia-associated neurodevelopmental risks.
Main Methods:
- Repeated early-life sevoflurane exposure in a preclinical model.
- Analysis of hippocampal vascular architecture (area, branching complexity).
- Assessment of endothelial cell integrity and TNF-α levels.
Main Results:
- Sevoflurane exposure caused long-term impairments in hippocampal vascular architecture.
- Reduced vascular area and branching complexity were observed.
- Impaired endothelial cell integrity and elevated TNF-α levels were associated with sevoflurane exposure.
- TNF-α exacerbated sevoflurane-induced endothelial cell injury in vitro.
Conclusions:
- Microvascular regression is a long-term consequence of early anesthetic exposure.
- Inflammatory signaling, particularly TNF-α, may contribute to endothelial vulnerability.
- Preserving endothelial integrity could be a strategy to mitigate anesthesia-associated neurodevelopmental risks.
Abstract:
Children who undergo multiple exposures to anesthesia for surgeries and procedures are at increased risk of developing neurocognitive impairments. Growing evidence suggests that anesthesia-induced neurotoxicity and acute damage to neural cells underlie these impairments. However, the mechanisms underlying the long-term adverse effects of early anesthetic exposure remain largely unknown. Here, we show that repeated early-life exposures to sevoflurane, a commonly used anesthetic in clinical practice, lead to long-term impairments in hippocampal vascular architecture, characterized by reduced vascular area and branching complexity, associated with alterations in postsynaptic density composition. Mechanistically, sevoflurane exposure was associated with evidence of impaired endothelial cell integrity and elevated circulating levels of the pro-inflammatory cytokine TNF-α. In vitro, physiologically relevant concentrations of TNF-α potentiated sevoflurane-induced endothelial cell injury, indicating that inflammatory signaling may exacerbate endothelial vulnerability. Together, these findings identify microvascular regression as a long-term consequence of early anesthetic exposure and suggest that preservation of endothelial integrity may represent a therapeutic strategy to mitigate or prevent anesthesia-associated neurodevelopmental risk.
