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March 15, 2016American Journal of Tropical Medicine and Hygiene22 citationsOpen Access

Altered Cardiomyocyte Function and Trypanosoma cruzi Persistence in Chagas Disease

JCJáder Santos CruzASArtur Santos‐MirandaPSPolicarpo A. Sales-Junior

Key Result

Trypanosoma cruzi infection in mice significantly reduced transient outward K+ current by approximately 50% and decreased L-type Ca2+ current in right ventricular myocytes.

Structured PICO

Does Trypanosoma cruzi infection alter the histological and electrical properties of right ventricular myocytes in a murine model of Chagas disease?

P
Population
Male C57BL/6 mice experimentally infected with Trypanosoma cruzi to evaluate right ventricular cardiomyocyte function at 30 and 90 days postinfection.
I
Intervention
Intraperitoneal infection with 50 bloodstream trypomastigote forms of Colombian Trypanosoma cruzi strain
C
Comparator
Uninfected age-matched control mice
O
Outcome
Histological (collagen deposition, inflammatory infiltrate) and electrical properties (action potential duration, transient outward K+ current, L-type Ca2+ current) of right ventricular myocytes at 30 and 90 days postinfectionsurrogate

Trypanosoma cruzi infection in mice causes right ventricular myocyte electrical remodeling (prolonged action potential, reduced K+ and Ca2+ currents) associated with parasite persistence and inflammation, providing a mechanistic basis for arrhythmias in Chagas disease.

Main Result

Absolute Event Rate: 15.1% vs 31.9%

p-value: p=<0.05

Limitations

  • Cannot completely rule out the presence of infected non-cardiomyocyte cells isolated along with cardiomyocytes during enzymatic dissociation.
  • Findings from a murine model may not fully translate to human Chagas disease pathology.
  • Cannot completely rule out the presence of infected cells isolated along with cardiomyocytes during the enzymatic dissociation of the heart

Abstract

Chagas disease, caused by the triatominae Trypanosoma cruzi, is one of the leading causes of heart malfunctioning in Latin America. The cardiac phenotype is observed in 20-30% of infected people 10-40 years after their primary infection. The cardiac complications during Chagas disease range from cardiac arrhythmias to heart failure, with important involvement of the right ventricle. Interestingly, no studies have evaluated the electrical properties of right ventricle myocytes during Chagas disease and correlated them to parasite persistence. Taking advantage of a murine model of Chagas disease, we studied the histological and electrical properties of right ventricle in acute (30 days postinfection dpi) and chronic phases (90 dpi) of infected mice with the Colombian strain of T. cruzi and their correlation to parasite persistence. We observed an increase in collagen deposition and inflammatory infiltrate at both 30 and 90 dpi. Furthermore, using reverse transcriptase polymerase chain reaction, we detected parasites at 90 dpi in right and left ventricles. In addition, we observed action potential prolongation and reduced transient outward K(+) current and L-type Ca(2+) current at 30 and 90 dpi. Taking together, our results demonstrate that T. cruzi infection leads to important modifications in electrical properties associated with inflammatory infiltrate and parasite persistence in mice right ventricle, suggesting a causal role between inflammation, parasite persistence, and altered cardiomyocyte function in Chagas disease. Thus, arrhythmias observed in Chagas disease may be partially related to altered electrical function in right ventricle.

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Cite This Study

Cruz et al. (2016) studied Chagas disease. Trypanosoma cruzi infection (Colombian strain) vs. Uninfected control mice was evaluated on Transient outward K+ current (Ito) density at +50 mV at 30 days postinfection (pA/pF) (p=<0.05). Trypanosoma cruzi infection in mice significantly reduced transient outward K+ current by approximately 50% and decreased L-type Ca2+ current in right ventricular myocytes.

synapsesocial.com/papers/6a94d5a48ce716a7e9fa5343https://doi.org/10.4269/ajtmh.15-0255
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