Female rats have been found much more sensitive to lethal effects of soman than male rats. Therefore it was of interest to examine the efficacy of different antidotes against soman poisoning in females which are usually not being used in soman poisoning studies. The effects of acetylcholinesterase (AChE) non-reactivating antidotes atropine and diazepam were analyzed in combination with physostigmine prophylaxis against supralethal doses of soman. Physostigmine prophylaxis was much more effective when supplemented by atropine and diazepam therapy, applied at the onset of the first signs of poisoning. The interval between the injection of a supralethal dose of soman and the appearance of signs of poisoning was shorter in physostigmine pretreated animals than in non-pretreated controls poisoned with the same supralethal dose of soman. The prophylactic effect of physostigmine (used at maximal dose) disappeared in about 120 min. The addition of HI-6, an AChE-reactivating oxime, to atropine + diazepam therapy further increased the survival in soman-poisoned and physostigmine-pretreated rats, yielding the highest protective ratio of 6.4. Pretreatment with physostigmine offered marked protection against inhibition of AChE by soman, as shown by enzyme activity determination in different brain regions and in diaphragm muscle. Application of HI-6 in addition to the combination of the above mentioned antidotes even preserved more AChE activity in the skeletal muscle but did not influence inhibition of the enzyme in brain.
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Chem Biol Interact
February 2025
Department of Toxicology and Military Pharmacy, Military Faculty of Medicine, University of Defence, Trebesska 1575, 500 01, Hradec Kralove, Czech Republic; Biomedical Research Center, University Hospital Hradec Kralove, Sokolska 581, Hradec Kralove, Czech Republic. Electronic address:
The current pharmacological pretreatment and medical treatment of nerve agent poisoning is an insufficiently addressed medical task. The prophylactic efficacy of a novel compound acting dually as an acetylcholinesterase inhibitor and NMDA receptor antagonist (K1959) and the therapeutic efficacy of a novel NMDA receptor antagonist (K2060) were evaluated in the NMRI mice model of nerve agent poisoning by tabun, soman and sarin. Their added value to the standard antidotal treatment (a combination of oxime reactivator and atropine) was also analyzed.
View Article and Find Full Text PDFJ Pharm Biomed Anal
March 2025
Department of Chemistry, Biochemistry and Physics, South Dakota State University, Box 2202, Brookings, SD 57007, USA. Electronic address:
Organophosphorus (OP) pesticides (e.g., parathion) and nerve agents (e.
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Department of CBRN Protection, TNO Defence, Safety and Security, Lange Kleiweg 137, 2288 GJ Rijswijk, the Netherlands.
Chemically-induced seizures, as a result of exposure to a neurotoxic compound, present a serious health concern. Compounds can elicit seizure activity through disruption of neuronal signaling by neurotransmitters, either by mimicking, modulating or antagonizing their action at the receptor or interfering with their metabolism. Benzodiazepines, such as diazepam and midazolam, and barbiturates are the mainstay of treatment of seizures.
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Bundeswehr Institute for Pharmacology and Toxicology, Neuherbergstraße 11, Munich 80937, Germany. Electronic address:
Neurotox Res
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Neuroscience Department, Medical Toxicology Research Division, U.S. Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground, MD, 21010-5400, USA.
Recently a novel genetically modified mouse strain with serum carboxylesterase knocked-out and the human acetylcholinesterase gene knocked-in (KIKO) was created to simulate human responses to nerve agent (NA) exposure and its standard medical treatment. A adenosine receptor (AAR) agonist N-bicyclo-(2.2.
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