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bioRxiv · 10.1101/2025.01.08.631785

Establishing a preclinical chronic wound model to characterise the pathophysiology of snakebite envenoming

Abstract

Snakebite claims 138,000 lives a year with an additional 400,000 patients left permanently disabled or disfigured1. Morbidity following envenoming includes the development of chronic wounds around the bite site. The understanding of the underlying pathophysiology of chronic snakebite wounds has been severely limited by the historical reliance on a preclinical model that only captures acute local envenoming pathology. Through the application of three medically important snake venoms (Echis ocellatus, Bothrops atrox and Naja nigricollis) to a recently developed preclinical model of chronic wounds, we have been able to characterise key features of venom wounds. We have been able to show that venom wounds share consistencies with non-venom induced preclinical wounds, and also display unique characteristics such as extracellular matrix degradation and eosinophilic infiltrate. This model will not only serve to increase our understanding the underlying pathophysiology of venom wounds, but will also provide a platform for exploring therapeutic interventions to reduce or resolve snakebite wounds.

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BibTeXRIS

Dawson, C. A., Harijanto, P., Nawilaijaroen, Y., Casewell, N. R., Cash, J. L.. 2025-01-12. Establishing a preclinical chronic wound model to characterise the pathophysiology of snakebite envenoming. https://doi.org/10.1101/2025.01.08.631785

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