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Updated: Nov 4, 2025

A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
Dengue virus infection induces inflammation and oxidative stress on the heart
Lucas Miranda Kangussu1, Vivian Vasconcelos Costa2, Vania Claudia Olivon3
1Departamento de Farmacologia, ICB, Universidade Federal de Minas Gerais, Belo Horizonte, Brasil.
Insights
Dengue virus (DENV) infection causes significant cardiac dysfunction. This study reveals DENV-3 impacts heart function through inflammation, oxidative stress, and electrophysiological changes, offering new therapeutic targets.
Area of Science:
- Cardiology
- Virology
- Pathogenesis
Background:
- Dengue fever is a major arboviral disease with severe systemic and cardiovascular manifestations.
- The precise mechanisms of Dengue virus (DENV) pathogenesis in the heart require further investigation.
Purpose of the Study:
- To evaluate cardiac outcomes following DENV infection.
- To elucidate the mechanisms underlying DENV-induced cardiac dysfunction.
Main Methods:
- Male BALB/c mice were infected with an adapted DENV-3 strain.
- Assessed hemodynamic, functional, electrophysiological, inflammatory, and oxidative parameters in the heart.
Main Results:
- DENV-3 infection led to systemic inflammation, increased vascular permeability, reduced blood pressure, and increased heart rate.
- Cardiac output and stroke volume decreased, with trends towards reduced ventricular dimensions.
- Inflammatory infiltrates, pericarditis, myocarditis, elevated reactive oxygen species, and lipoperoxidation were observed in cardiac tissue.
Conclusions:
- DENV-3 infection induces significant cardiac dysfunction.
- Mechanisms include inflammation, oxidative stress, and electrophysiological alterations.
- Findings offer insights into DENV pathogenesis and potential therapeutic targets.
Objective:
Dengue fever is one of the most important arboviral diseases in the world, and its severe forms are characterised by a broad spectrum of systemic and cardiovascular hallmarks. However, much remains to be elucidated regarding the pathogenesis triggered by Dengue virus (DENV) in the heart. Herein, we evaluated the cardiac outcomes unleashed by DENV infection and the possible mechanisms associated with these effects.
Methods:
A model of an adapted DENV-3 strain was used to infect male BALB/c mice to assess haemodynamic measurements and the functional, electrophysiological, inflammatory and oxidative parameters in the heart.
Results:
DENV-3 infection resulted in increased systemic inflammation and vascular permeability with consequent reduction of systolic blood pressure and increase in heart rate. These changes were accompanied by a decrease in the cardiac output and stroke volume, with a reduction trend in the left ventricular end-systolic and end-diastolic diameters and volumes. Also, there was a reduction trend in the calcium current density in the ventricular cardiomyocytes of DENV-3 infected mice. Indeed, DENV-3 infection led to leucocyte infiltration and production of inflammatory mediators in the heart, causing pericarditis and myocarditis. Moreover, increased reactive oxygen species generation and lipoperoxidation were also verified in the cardiac tissue of DENV-3 infected mice.
Conclusions:
DENV-3 infection induced a marked cardiac dysfunction, which may be associated with inflammation, oxidative stress and electrophysiological changes in the heart. These findings provide new cardiac insights into the mechanisms involved in the pathogenesis triggered by DENV, contributing to the research of new therapeutic targets for clinical practice.
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