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January 14, 2026Forensic Sciences2 citationsOpen Access

Autopsy-Proven Snakebite Envenoming Deaths: A Review of Forensic and Pathological Evidence

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MSMatteo Antonio SaccoSGSaverio GualtieriAPAurora Princi

Key Points

  • This review aims to synthesize literature on autopsy-confirmed snakebite deaths, focusing on forensic and pathological evidence.
  • Comprehensive search of PubMed NCBI databases to identify relevant studies
  • Analysis of nine studies, including case reports and systematic reviews
  • Focus on forensic characterization and toxicological analysis of snakebite deaths
  • Identification of mechanisms of death including VICC, acute renal failure, and neurotoxic respiratory arrest
  • Histological findings of necrosis and pulmonary edema in victims
  • Toxicological confirmation of venom use through ELISA and LC–MS/MS techniques

Abstract

Background/Objectives: Snakebite envenoming remains a critical yet frequently under-recognized cause of mortality in many parts of the world, particularly in tropical and rural areas where access to timely medical care and accurate post-mortem investigation is limited. While clinical and epidemiological data on snakebites have been extensively studied, the forensic characterization of fatal envenomations remains fragmentary and inconsistently documented. This review aims to synthesize the existing literature on autopsy-confirmed snakebite deaths, focusing on the pathological and toxicological evidence that supports cause-of-death determinations in forensic settings. Methods: A comprehensive search of the PubMed NCBI databases identified nine relevant studies, including case reports, retrospective analyses, and systematic reviews. Results: Across these reports, a range of lethal mechanisms were identified, including venom-induced consumption coagulopathy (VICC), acute renal failure (frequently in the setting of rhabdomyolysis and acute tubular necrosis), neurotoxic respiratory arrest, multi-organ necrosis, and myocardial infarction. Histological findings frequently revealed glomerular and tubular necrosis, pulmonary edema and/or hemorrhage, pituitary and adrenal hemorrhage, and cerebral ischemic changes. Toxicological confirmation was achieved in several cases using ELISA and liquid chromatography–mass spectrometry (LC–MS/MS), underscoring the importance of biochemical validation in post-mortem diagnosis and the value of analytical tools beyond ELISA (e.g., immunoaffinity LC–MS/MS, venom-specific immunohistochemistry, zymography for SVMP activity). Conclusions: Our findings highlight the variability in venom effects across snake families—particularly Viperidae, Elapidae, and Lamprophiidae/Atractaspididae—and emphasize the indispensable role of forensic autopsy in distinguishing snakebite envenoming from other causes of sudden or unexplained death. However, significant limitations persist, including inconsistent autopsy protocols, lack of species-specific venom assays, and poor integration of toxicological methods in routine forensic practice. Addressing these gaps through standardized forensic guidelines and improved access to diagnostic tools is essential for enhancing the accuracy of death investigations in envenoming-endemic regions.

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Cite This Study

Sacco et al. (2026) studied this question.

synapsesocial.com/papers/6967197b87ba607552bb95fahttps://doi.org/10.3390/forensicsci6010002
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