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Published on: January 20, 2023
Midazolam and isoflurane combination reduces late brain damage in the paraoxon-induced status epilepticus rat model
Evyatar Swissa1, Guy Bar-Klein2, Yonatan Serlin3
1Departments of Brain and Cognitive Sciences, Physiology and Cell Biology, The Inter-Faculty Brain Science School, Zlotowski Center for Neuroscience, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Abstract:
Organophosphates (OPs) are widely used as pesticides and have been employed as warfare agents. OPs inhibit acetylcholinesterase, leading to over-stimulation of cholinergic synapses and can cause status epilepticus (SE). OPs poisoning can result in irreversible brain damage and death. Despite termination of SE, recurrent seizures and abnormal brain activity remain common sequelae often associated with long-term neural damage and cognitive dysfunction. Therefore, early treatment for prevention of seizures is of high interest. Using a rat model of paraoxon poisoning, we tested the efficacy of different neuroprotective and anti-epileptic drugs (AEDs) in suppressing early seizures and preventing brain damage. Electrocorticographic recordings were performed prior, during and after injection of 4.5 LD50 paraoxon, followed by injections of atropine and toxogonin (obidoxime) to prevent death. Thirty minutes later, rats were injected with midazolam alone or in combination with different AEDs (lorazepam, valproic acid, phenytoin) or neuroprotective drugs (losartan, isoflurane). Outcome measures included SE duration, early seizures frequency and epileptiform activity duration in the first 24 -hs after poisoning. To assess delayed brain damage, we performed T2-weighted magnetic resonance imaging one month after poisoning. SE duration and the number of recurrent seizures were not affected by the addition of any of the drugs tested. Delayed brain injury was most prominent in the septum, striatum, amygdala and piriform network. Only isoflurane anesthesia significantly reduced brain damage. We show that acute treatment with isoflurane, but not AEDs, reduces brain damage following SE. This may offer a new therapeutic approach for exposed individuals.
Insights
Organophosphate poisoning causes seizures and brain damage. While anti-epileptic drugs did not prevent damage, acute isoflurane anesthesia showed promise in reducing neural injury in a rat model.
Area of Science:
- Neuroscience
- Toxicology
- Pharmacology
Background:
- Organophosphates (OPs) are common pesticides and chemical warfare agents that inhibit acetylcholinesterase, leading to neurotoxicity and status epilepticus (SE).
- SE can cause irreversible brain damage, cognitive dysfunction, and death, necessitating early intervention to prevent seizures and neural injury.
Purpose of the Study:
- To evaluate the efficacy of neuroprotective and anti-epileptic drugs (AEDs) in preventing seizures and brain damage following organophosphate poisoning.
- To identify potential therapeutic strategies for mitigating the long-term consequences of OP-induced SE.
Main Methods:
- A rat model of paraoxon poisoning was used, with electrocorticographic recordings to monitor seizure activity.
- Rats received atropine and toxogonin, followed by midazolam alone or combined with AEDs (lorazepam, valproic acid, phenytoin) or neuroprotective agents (losartan, isoflurane).
- Brain damage was assessed one month post-poisoning using T2-weighted magnetic resonance imaging.
Main Results:
- None of the tested AEDs or losartan affected SE duration or recurrent seizure frequency.
- Significant delayed brain injury was observed in multiple brain regions, including the septum, striatum, and amygdala.
- Acute administration of isoflurane anesthesia significantly reduced the extent of brain damage.
Conclusions:
- Standard anti-epileptic drugs are ineffective in preventing organophosphate-induced brain damage.
- Acute isoflurane anesthesia represents a potential therapeutic approach to mitigate neurotoxicity following organophosphate exposure.
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