Cardiac Involvement in Vasculotoxic and Neurotoxic Snakebite - A not so Uncommon Complication
Kumar K Sunil1, Joseph K Joseph1, Stigi Joseph2
1Department of Internal Medicine, Little Flower Hospital and Research Centre, Angamaly, Kerala.
Insights
Cardiac toxicity is common after snake bites, affecting over 40% of patients regardless of venom type (neurotoxic or vasculotoxic). This study highlights the frequent occurrence of cardiac complications in snakebite envenomation.
Area of Science:
- Cardiology
- Toxicology
- Clinical Medicine
Background:
- Cardiac toxicity is a known, yet understudied, complication of snakebite envenomation.
- The specific impact on neurotoxic bites requires further investigation.
- This study aimed to detail cardiac toxicity incidence and predictors.
Purpose of the Study:
- To evaluate the incidence of cardiac toxicity in snakebite patients.
- To compare cardiac toxicity between neurotoxic and vasculotoxic envenomation.
- To identify predictors for cardiotoxicity development.
Main Methods:
- Prospective observational study of 96 snakebite patients.
- Cardiac function assessed via clinical evaluation, ECG, echocardiogram, and troponin-I.
- Analysis of demographic and clinical parameters for predictive value.
Main Results:
- Cardiac toxicity observed in 42.7% of patients.
- ECG changes (34.3%) and elevated troponin-I (21.9%) were most common.
- No significant difference in cardiotoxicity between neurotoxic (41.7%) and vasculotoxic (42.9%) bites; no predictors identified.
Conclusions:
- Cardiac toxicity is a frequent complication of poisonous snake bites.
- Both neurotoxic and vasculotoxic snakebites are associated with cardiac toxicity.
- Cardiac toxicity in this study did not increase mortality.
Background:
Cardiac toxicity following snakebite envenomation has been previously observed, but not studied in detail, especially the involvement in neurotoxic bites. This prospective observational case study evaluates the incidence of cardiac toxicity along with the difference between vasculotoxic and neurotoxic bites and analysing the predictors for development of cardiotoxicity.
Method:
96 patients who had snake bite envenomation were evaluated for features of cardiotoxicity with clinical features, ECG, echocardiogram and troponin-I levels.
Results:
Cardiac toxicity was observed in 42.7% of patients, the majority were either ECG changes, noted in 34.3% and rise in troponin-I, noted in 21.9% of patients. Other changes included echocardiographic changes in 4.2%, and Takotsubo cardiomyopathy in 1%. There was no significant difference in the incidence of cardiotoxicity between the neurotoxic (41.7%) and vasculotoxic (42.9%) (p value =1) snake bites, even though the predominant changes seen in neurotoxic snake bites were ECG changes. There were no deaths in the current study. None of the demographic or clinical parameters studied could predict the development of cardiac events.
Conclusion:
Cardiac toxicity is a well defined complication of poisonous snake bite and incidence is more frequent than previously thought. Both vasculotoxic and neurotoxic snake bites are associated with cardiac toxicity and is not associated with increase in mortality.
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