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Repurposed drugs and their combinations prevent morbidity-inducing dermonecrosis caused by diverse cytotoxic snake venoms

Steven R Hall, Sean A Rasmussen, Edouard Crittenden, Charlotte A Dawson, Keirah E Bartlett, Adam P Westhorpe, Laura-Oana Albulescu, Jeroen Kool, José María Gutiérrez, Nicholas R Casewell

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Abstract

Morbidity from snakebite envenoming affects approximately 400,000 people annually. Tissue damage at the bite-site often leaves victims with catastrophic life-long injuries and is largely untreatable by current antivenoms. Repurposed small molecule drugs that inhibit specific snake venom toxins show considerable promise for tackling this neglected tropical disease. Using human skin cell assays as an initial model for snakebite-induced dermonecrosis, we show that the drugs 2,3-dimercapto-1-propanesulfonic acid (DMPS), marimastat, and varespladib, alone or in combination, inhibit the cytotoxicity of a broad range of medically important snake venoms. Thereafter, using preclinical mouse models of dermonecrosis, we demonstrate that the dual therapeutic combinations of DMPS or marimastat with varespladib significantly inhibit the dermonecrotic activity of geographically distinct and medically important snake venoms, even when the drug combinations are delivered one hour after envenoming. These findings strongly support the future translation of repurposed drug combinations as broad-spectrum therapeutics for preventing morbidity caused by snakebite.

Original languageEnglish
Article number7812
Pages (from-to)1-15
Number of pages15
JournalNature Communications
Volume14
Issue number1
DOIs
Publication statusPublished - 14/12/2023

User-defined Keywords

  • Mice
  • Humans
  • Animals
  • Snake Bites/drug therapy
  • Snake Venoms/toxicity
  • Drug Combinations

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