Diazepam Inhibits Organophosphate-induced Central Respiratory Depression
- 1 December 2003
- journal article
- Published by Wiley in Academic Emergency Medicine
- Vol. 10 (12) , 1303-1306
- https://doi.org/10.1111/j.1553-2712.2003.tb00001.x
Abstract
Current evidence suggests that mortality from acute organophosphate (OP) poisoning is partially mediated through central nervous system (CNS) respiratory center depression (CRD). However, the exact mechanism of OP-induced CRD is unknown. In these studies, the authors investigated the hypothesis that OP-induced CRD is the result of overstimulation of CNS respiratory centers. Wistar rats received prophylaxis with either normal saline (controls), atropine, the peripherally acting anticholinergics glycopyrrolate (GLYC), ipratropium bromide (IB), or the CNS respiratory center attenuator diazepam. To determine if a dual CNS/peripheral cholinergic mechanism is responsible for animal death, two additional groups received combination treatment with diazepam plus either IB or GLYC. All treatments were completed 5 minutes before OP with subcutaneous dichlorvos. Differences in 10-minute and 24-hour mortality were assessed by the Fisher exact test. Dichlorvos poisoning resulted in profound fasciculations without obvious seizure in all cohorts. In controls and animals treated with peripherally acting anticholinergics, fasciculations were followed by sedation and respiratory arrest (0% 10-minute survival in all cohorts). In contrast, pretreatment with either atropine or diazepam significantly improved 10-minute survival (100% and 44%, respectively). Although GLYC or IB afforded no protection when given alone, when delivered in conjunction with diazepam, the combination significantly improved survival (both groups 88% at 24 hours), suggesting a dual CNS/pulmonary muscarinic mechanism of lethality. The central respiratory depressant diazepam paradoxically attenuates organophosphate-induced respiratory depression, and when combined with peripherally acting anticholinergic agents, reduces mortality in a rat model of severe acute OP poisoning.Keywords
This publication has 12 references indexed in Scilit:
- Early Death Due to Severe Organophosphate Poisoning Is a Centrally Mediated ProcessAcademic Emergency Medicine, 2003
- Diphenhydramine as a Protective Agent in a Rat Model of Acute, Lethal Organophosphate PoisoningAcademic Emergency Medicine, 2002
- The influence of anticholinergic drug selection on the efficacy of antidotal treatment of soman-poisoned rats.Toxicology, 2000
- Comparative evaluation of benzodiazepines for control of soman-induced seizuresArchives of Toxicology, 1999
- Anticonvulsant treatment of nerve agent seizures: anticholinergics versus diazepam in soman-intoxicated guinea pigsEpilepsy Research, 1999
- Neuropharmacological Mechanisms of Nerve Agent-induced Seizure and NeuropathologyNeuroscience & Biobehavioral Reviews, 1997
- REM sleep pathways and anticholinesterase intoxication: A mechanism for nerve agent-induced, central respiratory failureMedical Hypotheses, 1993
- Pyridostigmine used as a nerve agent pretreatment under wartime conditionsPublished by American Medical Association (AMA) ,1991
- Neurophysiological concomitants of soman-induced respiratory depression in awake, behaving guinea pigsToxicology and Applied Pharmacology, 1990
- Organophosphate poisoningAnnals of Emergency Medicine, 1987