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Isoflurane reduces N-methyl-D-aspartate toxicity in vivo in the rat cerebral cortex
H Harada1, P J Kelly, D J Cole
1Department of Anesthesiology, Kurume University School of Medicine, Japan.
Unlabelled:
Recent in vitro data indicate that isoflurane can reduce N-methyl-D-aspartate (NMDA) receptor-mediated responses and thereby might reduce excitotoxicity. However, the effect of isoflurane on NMDA receptor-mediated toxicity in vivo is not known. We conducted the present study to evaluate the effect of isoflurane on injury produced by cortical injection of NMDA in vivo and to compare it with dizocilpine, an antagonist of the NMDA receptor. Fasted Wistar-Kyoto rats were anesthetized with isoflurane. NMDA 50 nmoles (5-microL volume) were stereotactically injected into the cortex (2.8 mm lateral and 2.8 mm rostral to the bregma, depth 2 mm) of animals in one of four groups. In the isoflurane groups, the end-tidal concentration of isoflurane was maintained at either electroencephalogram (EEG)-burst suppression (BS) doses (2.2%-2.3%, n = 12) or a 1 minimum alveolar anesthetic concentration (MAC) dose (n = 10). In the dizocilpine group (n = 10), 10 mg/kg dizocilpine was injected IV 15 min before the NMDA injection. In the awake group and the dizocilpine group, anesthesia was discontinued on completion of the NMDA injection, and the animals were allowed to awaken. In the animals in the control group (n = 10), 20 microL of artificial cerebrospinal fluid was injected into the cortex. Injury to the cortex was evaluated 2 days after the NMDA injection. In 1 MAC doses and EEG-BS doses, isoflurane reduced the injury produced by a cortical NMDA injection compared with the awake state (1.74+/-0.49 and 0.96+/-0.46 vs 2.34+/-0.56 mm3; P = 0.02). Dizocilpine reduced cortical injury (0.56+/-0.27; P = 0.01) compared with the awake state. Injury in the control group was limited to the trauma produced by cannula insertion. In the isoflurane EEG-BS and dizocilpine groups, the injury was not different from the control group.
Implications:
Isoflurane can reduce N-methyl-D-aspartate-mediated cortical injury in vivo in a dose-dependent manner. These data are consistent with the previously demonstrated ability of isoflurane to reduce N-methyl-D-aspartate receptor-mediated responses in vitro.
Insights
Isoflurane reduces N-methyl-D-aspartate (NMDA)-mediated cortical injury in vivo, demonstrating a dose-dependent protective effect. This finding supports in vitro data on isoflurane
Area of Science:
- Neuroscience
- Anesthesiology
- Neuroprotection
Background:
- In vitro studies suggest isoflurane mitigates N-methyl-D-aspartate (NMDA) receptor-mediated responses, potentially reducing excitotoxicity.
- The in vivo efficacy of isoflurane in preventing NMDA receptor-mediated cortical injury remains uninvestigated.
Purpose of the Study:
- To evaluate the neuroprotective effect of isoflurane against NMDA-induced cortical injury in vivo.
- To compare the efficacy of isoflurane with dizocilpine, a known NMDA receptor antagonist.
Main Methods:
- Wistar-Kyoto rats received cortical injections of NMDA.
- Isoflurane was administered at 1 minimum alveolar anesthetic concentration (MAC) or electroencephalogram (EEG)-burst suppression (BS) doses.
- Dizocilpine was administered intravenously 15 minutes prior to NMDA injection.
- Cortical injury volume was assessed 2 days post-injection.
Main Results:
- Isoflurane significantly reduced NMDA-induced cortical injury compared to the awake state at both 1 MAC and EEG-BS doses (P = 0.02).
- Dizocilpine also demonstrated significant neuroprotection against NMDA-induced cortical injury (P = 0.01).
- At EEG-BS doses, isoflurane and dizocilpine groups showed injury levels comparable to the control group.
Conclusions:
- Isoflurane exhibits a dose-dependent neuroprotective effect against NMDA-mediated cortical injury in vivo.
- These findings corroborate in vitro observations regarding isoflurane's impact on NMDA receptor activity.
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