Authors
Fajar Sofyantoro, Benadya Aprilia Susanto, Fitriana Damayanti, Ghea Navali Wihatma, Muhamad Rusdi Ahmad Rusmili, Muhammad Kadzim Al Habsyi, Mutiara Puri Pradani, Anindya Sisilia Syarif, Riska Nur Aisiyah, Alda Zaenida Nurul Raizma, Muhammad Ahyf Mutawakkil, Imran Sadewo, Ardaning Nuriliani, Tri Rini Nuringtyas, Donan Satria Yudha, Slamet Raharjo, Yekti Asih Purwestri
Published in
The Journal of veterinary medical science. Aug 17, 2026. Epub Aug 17, 2026.
Abstract
Snakebite-induced local tissue damage remains a challenge in snakebite envenoming management because venom toxins rapidly disrupt vascular and extracellular matrix integrity at the bite site. This study evaluated the inhibitory effect of marimastat, an inhibitor of zinc-dependent metalloproteinases, against local tissue damage induced by Indonesian Trimeresurus insularis and Calloselasma rhodostoma venoms in a mouse skin model. The minimum hemorrhagic dose (MHD) of C. rhodostoma venom was determined in BALB/c mice and estimated to be 7.07 µg, while the MHD of T. insularis was adopted from a previous study. Mice received intradermal injections of venom at 2× MHD, either alone or pre-incubated with marimastat at venom:marimastat ratios of 1:1, 1:5, and 1:10 based on MHD equivalents. Macroscopic hemorrhage and histopathological changes, including erythrocyte extravasation, inflammatory cell infiltration, and collagen degradation, were assessed three hours after injection. Both venoms induced marked hemorrhagic lesions and tissue damage. Marimastat reduced venom-induced hemorrhage in both models, with near-complete inhibition in the T. insularis 1:10 group and complete inhibition in the C. rhodostoma 1:10 group. Marimastat also decreased erythrocyte extravasation, inflammatory infiltration, and collagen degradation, indicating preservation of microvascular and dermal matrix integrity. These findings support the central role of snake venom metalloproteinases in local viperid tissue damage and highlight marimastat as a promising adjunctive treatment for reducing venom-induced skin injury.
PMID:
42604805
Bibliographic data and abstract were imported from PubMed on 17 Aug 2026.
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