Comparison of the Intramuscular, Intranasal or Sublingual Routes of Midazolam Administration for the Control of Soman-Induced Seizures

Abstract

This study evaluated the anticonvulsant effectiveness of midazolam to stop seizures elicited by the nerve agent soman when midazolam was administered by different routes (intramuscular, intranasal or sublingual) at one of two different times after the onset of seizure activity. Guinea pigs previously prepared with cortical electrodes to record brain electroencephalographic activity were pre-treated with pyridostigmine (0.026 mg/kg, intramuscularly) 30 min. before challenge with a seizure-inducing dose of the nerve agent soman (56 microng/kg, subcutaneously), and 1 min. later, they were administered 2.0 mg/kg atropine sulfate admixed with 25.0 mg/kg 2-PAM Cl (intramuscularly). Groups of animals were administered differing doses of midazolam by the intramuscular, intranasal or sublingual route at either the onset of seizure activity or 40 min. after the onset of seizure activity that was detected in the electroencephalographic record. When given immediately after seizure onset, the anticonvulsant ED 50 of intramuscular midazolam was significantly lower than that of intranasal midazolam, which in turn was significantly lower than sublingual midazolam at that time. At the 40-min. treatment delay, the anticonvulsant ED 50 of intramuscular or intranasal midazolam did not differ and both were significantly lower than the sublingual route. Higher doses of midazolam were required to stop seizures at the 40-min. treatment delay time compared to immediate treatment. The speed of seizure control for intramuscular or intranasal midazolam was the same while sublingual midazolam acted significantly slower. Midazolam was effective in treating soman-induced seizures when given by all three routes, but with differences in potency and speed of action.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2008
Accession Number
ADA501705

Entities

People

  • John C. Lamont
  • John H. McDonough
  • Joseph D. Mcmonagle
  • Kerry E. Van Shura
  • Tsung-Ming Shih

Organizations

  • United States Army Medical Research Institute of Chemical Defense

Tags

DTIC Thesaurus Topics

  • Animals
  • Anticonvulsants
  • Biomedical Research
  • Confidence Limits
  • Data Analysis
  • Epilepsy
  • Factor Analysis
  • Frequency
  • Health Services
  • Intramuscular Injections
  • Medical Personnel
  • Nerve Agents
  • Pharmacology
  • Pyridostigmine Bromide
  • Rodents
  • Statistical Analysis
  • Therapy

Fields of Study

  • Biology

Readers

  • Neurotoxicology
  • Toxicology/Environmental Toxicology