Propofol and Sevoflurane Anesthesia in Early Childhood Do Not Influence Seizure Threshold in Adult Rats
Paweł Piwowarczyk1, Elżbieta Rypulak1, Justyna Sysiak-Sławecka1
1II Department of Anesthesiology and Intensive Care, Medical University of Lublin, ul. Staszica 16, 20-081 Lublin, Poland.
Insights
General anesthetics like propofol and sevoflurane given during early brain development (synaptogenesis) did not affect seizure thresholds in adult rats. This suggests no increased epilepsy risk from single exposures.
Area of Science:
- Neuroscience
- Anesthesiology
- Developmental Biology
Background:
- General anesthetics during synaptogenesis may cause neurodegeneration and lasting deficits.
- The impact of anesthetics on epilepsy comorbidities, potentially linked to neurodegeneration, requires further investigation.
Purpose of the Study:
- To test if anesthetic-induced neuropathology during synaptogenesis alters adult seizure thresholds.
- To evaluate the long-term effects of propofol and sevoflurane on epileptogenesis.
Main Methods:
- Wistar rat pups received propofol, sevoflurane, or saline on postnatal day 6.
- Adult rats were assessed for epileptogenesis using corneal kindling and chemical seizure models (pilocarpine, pentylenetetrazole).
- Body weight gain was monitored throughout the study.
Main Results:
- No significant changes in seizure threshold were observed across the three models.
- Propofol exposure during synaptogenesis led to significant weight gain, unlike sevoflurane.
- Sevoflurane and propofol did not alter epileptogenesis in adult rats.
Conclusions:
- Single, prolonged exposure to sevoflurane or propofol during synaptogenesis does not appear to negatively impact epileptogenesis in adulthood.
- These findings suggest a potential lack of increased epilepsy risk following early-life anesthetic exposure.
Abstract:
Experimental studies have demonstrated that general anesthetics administered during the period of synaptogenesis may induce widespread neurodegeneration, which results in permanent cognitive and behavioral deficits. What remains to be elucidated is the extent of the potential influence of the commonly used hypnotics on comorbidities including epilepsy, which may have resulted from increased neurodegeneration during synaptogenesis. This study aimed to test the hypothesis that neuropathological changes induced by anesthetics during synaptogenesis may lead to changes in the seizure threshold during adulthood. Wistar rat pups were treated with propofol, sevoflurane, or saline on the sixth postnatal day. The long-term effects of prolonged propofol and sevoflurane anesthesia on epileptogenesis were assessed using corneal kindling, pilocarpine-, and pentylenetetrazole-induced seizure models in adult animals. Body weight gain was measured throughout the experiment. No changes in the seizure threshold were observed in the three models. A significant weight gain after exposure to anesthetics during synaptogenesis was observed in the propofol group but not in the sevoflurane group. The results suggest that single prolonged exposure to sevoflurane or propofol during synaptogenesis may have no undesirable effects on epileptogenesis in adulthood.
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