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Updated: Mar 1, 2026

Adaptation of Microelectrode Array Technology for the Study of Anesthesia-induced Neurotoxicity in the Intact Piglet Brain
Published on: May 12, 2018
Neurotoxicity of anesthetic drugs: an update
Federico Bilotta1, Lis A Evered, Shaun E Gruenbaum
1aDepartment of Anesthesiology, Critical Care and Pain Medicine, 'Sapienza' University of Rome, Rome, Italy bDepartment of Anaesthesia & Acute Pain Medicine St Vincent's Hospital, Melbourne, Australia; Melbourne Medical School University of Melbourne, Melbourne, Australia cDepartment of Anesthesiology, Yale University School of Medicine, New Haven, Connecticut, USA.
Purpose Of Review:
This article reviews the most recently published evidence that investigated anesthesia-induced neurotoxicity in both animals and humans, especially as it pertains to the perinatal period.
Recent Findings:
Several recent studies have focused on better understanding the complex mechanisms that underlie intravenous and volatile anesthesia-induced neurotoxicity in animals. Adjuvant agents that target these pathways have been investigated for their effectiveness in attenuating the neuroapoptosis and neurocognitive deficits that result from anesthesia exposure, including dexmedetomidine, rutin, vitamin C, tumor necrosis factor α, lithium, apocynin, carreic acid phenethyl ester. Five clinical studies, including one randomized control trial, provided inconsistent evidence on anesthesia-induced neurotoxicity in humans.
Summary:
Despite a growing body of preclinical studies that have demonstrated anesthesia-induced neurotoxic effects in the developing and aging brain, their effects on the human brain remains to be determined. The performance of large-scale human studies is limited by several important factors, and noninvasive biomarkers and neuroimaging modalities should be employed to define the injury phenotypes that reflect anesthesia-induced neurotoxicity. Ultimately, the use of these modalities may provide new insights into whether the concerns of anesthetics are justified in humans.
Insights
Anesthesia may harm developing brains, but human evidence is inconclusive. Further research using advanced imaging and biomarkers is needed to confirm anesthesia-induced neurotoxicity risks in people.
Area of Science:
- Neuroscience
- Anesthesiology
- Developmental Biology
Background:
- Anesthesia-induced neurotoxicity is a growing concern, particularly in vulnerable populations.
- Preclinical studies reveal mechanisms of neurotoxicity from anesthetic agents.
Purpose of the Study:
- To review recent evidence on anesthesia-induced neurotoxicity in animal and human models.
- To focus on neurotoxicity during the perinatal period.
Main Methods:
- Review of recent preclinical and clinical studies.
- Analysis of animal models investigating anesthetic neurotoxic mechanisms.
- Evaluation of human clinical trials, including a randomized control trial.
Main Results:
- Animal studies identified pathways of intravenous and volatile anesthesia-induced neurotoxicity.
- Adjuvant agents like dexmedetomidine and vitamin C show potential in mitigating neurotoxicity in animals.
- Clinical studies provided inconsistent evidence regarding anesthesia-induced neurotoxicity in humans.
Conclusions:
- Preclinical data suggest anesthesia can harm developing and aging brains.
- Human brain effects of anesthesia remain undetermined due to study limitations.
- Noninvasive biomarkers and neuroimaging are crucial for future human studies to validate concerns.
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