Delayed LY333013 (oral) and LY315920 (intravenous) reverse severe neurotoxicity and rescue juvenile pigs from lethal doses of Micrurus fulvius (eastern coral snake) venom

 

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Bibliografiske detaljer
Autores: Lewin, Matthew R., Gilliam, Lyndi L., Gilliam, John, Samuel, Stephen Paul, Bulfone, Tommaso Celeste, Bickler, Philip E., Gutiérrez, José María
Format: artículo original
Fecha de Publicación:2018
Beskrivelse:There is a clear, unmet need for effective, lightweight, shelf-stable and economical snakebite envenoming therapies that can be given rapidly after the time of a snake's bite and as adjuncts to antivenom therapies in the hospital setting. The sPLA2 inhibitor, LY315920, and its orally bioavailable prodrug, LY333013, demonstrate surprising efficacy and have the characteristics of an antidote with potential for both field and hospital use. The efficacy of the active pharmaceutical ingredient (LY315920) and its prodrug (LY333013) to treat experimental, lethal envenoming by Micrurus fulvius (Eastern coral snake) venom was tested using a porcine model. Inhibitors were administered by either intravenous or oral routes at different time intervals after venom injection. In some experiments, antivenom was also administered alone or in conjunction with LY333013. 14 of 14 animals (100%) receiving either LY315920 (intravenous) and/or LY333013 (oral) survived to the 120 h endpoint despite, in some protocols, the presence of severe neurotoxic signs. The study drugs demonstrated the ability to treat, rescue, and re-rescue animals with advanced manifestations of envenoming. Low molecular mass sPLA2 inhibitors were highly effective in preventing lethality following experimental envenoming by M. fulvius. These findings suggest the plausibility of a new therapeutic approach to snakebite envenoming, in this example, for the treatment of a coral snake species for which there are limitations in the availability of effective antivenom.
País:Kérwá
Institution:Universidad de Costa Rica
Repositorio:Kérwá
Sprog:Inglés
OAI Identifier:oai:kerwa.ucr.ac.cr:10669/103364
Online adgang:https://hdl.handle.net/10669/103364
https://doi.org/10.3390/toxins10110479
Palabra clave:snakebite
envenoming
antidote
inhibitor
coral snake
Micrurus fulvius
phospholipase A2
neurotoxicity
antivenom