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Updated: Aug 21, 2026

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Published on: July 25, 2022
Dexamethasone decreases neurological sequelae and caspase activity
Jose Irazuzta1, Robert K Pretzlaff, Gabrielle DeCourten-Myers
1Division of Critical Care Medicine, The Floating Hospital for Children, 750 Washington Street, NEMC#093, Boston, MA 02111, USA. JIrazuzta@Tufts-NEMC.org
Objective:
To evaluate the use of dexamethasone in a model of meningitis-induced brain injury. Changes in neurobehavioral performance were the primary outcome variables. Changes in caspase activation and markers of neuronal injury were the secondary outcome variables.
Design:
Randomized, prospective animal study.
Setting:
University research laboratory.
Subjects:
Male Wistar rats.
Interventions:
Animals underwent a basilar cistern injection of either placebo or a suspension of Group B Streptococcus. Sixteen hours after inoculation, animals were randomized and received either dexamethasone or placebo in addition to antibiotics. Neurobehavioral performance and biological markers of brain injury were assessed at 3 days and 9 days after randomization. In a second experiment, caspase 1 and 3 were evaluated at 6 h, 24 h, and 72 h after dexamethasone administration.
Measurements And Main Results:
Neurobehavioral performance at 3 days and 9 days was significantly improved in the dexamethasone group. Serum C-tau and cerebral edema were decreased after 3 days of dexamethasone treatment. Dexamethasone decreased Caspase 3 activation in meningitic animals.
Conclusion:
These findings demonstrate that dexamethasone decreases acute brain injury in a rat model of bacterial meningitis as measured by preservation of neurobehavioral performance.
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