Beyond surgery: Repurposing anesthetics for treatment of central nervous system disorders.
Joana Mielko, Julia Pakulska, Amelia Oszczyk, Klaudia Lustyk, Karolina Pytka, Kinga Sałaciak
Progress in neuro-psychopharmacology & biological psychiatry June 20, 2025 DOI: 10.1016/j.pnpbp.2025.111386 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Narrative review Peer reviewed |
|---|---|
| Interventions | ketamine nitrous oxide isoflurane sevoflurane propofol dexmedetomidine sodium oxybate |
| Keywords | Drug repurposing Neurological disorders Neuropsychiatric disorders Anesthetics anaesthetics Anesthetic drugs Anesthetic agents Therapeutic switching Drug retasking Psychiatric care |
| Key findings | Anesthetics such as ketamine, nitrous oxide, isoflurane, sevoflurane, propofol, dexmedetomidine, and sodium oxybate show potential for repurposing to treat neurological and psychiatric disorders, likely by modulating GABAergic and glutamatergic pathways. |
Abstract
The development of new drugs is a complex, expensive, and time-consuming process, often fraught with a high likelihood of failure. Amid these obstacles, drug repurposing, which identifies new therapeutic applications for already existing medications, offers a more economical and time-saving approach, particularly in the challenging field of neurological and psychiatric disorders. This narrative review explores both preclinical and clinical studies to examine the potential of anesthetics such as ketamine, nitrous oxide, isoflurane, sevoflurane, propofol, dexmedetomidine, and sodium oxybate in treating central nervous system disorders. Various research highlights the potential of anesthetics to provide rapid antidepressant effects, enhance learning and memory, improve synaptic plasticity, and offer neuroprotective benefits, demonstrating promise for treating depression, post-traumatic stress disorder, cognitive decline, traumatic brain injury, and neurodegenerative disorders. Anesthetics appear to alleviate symptoms in neurological conditions, likely by modulating GABAergic and glutamatergic pathways. However, challenges such as dose-dependent neurotoxicity, variability in preclinical and clinical outcomes, as well as environmental concerns remain significant issues. Future research is essential to optimize dosing strategies, ensure long-term safety, and gain a deeper understanding of the precise mechanisms of action. The concept of anesthetics' repurposing presents a unique solution to tackle the challenges in neurological and psychiatric therapy by providing a platform for the development of new and improved therapies.