Reactive oxygen species and nitric oxide imbalances lead to in vivo and in vitro arrhythmogenic phenotype in acute phase of experimental Chagas disease

dc.creatorSantos-Miranda, Artur
dc.creatorJoviano-Santos, Julliane Vasconcelos
dc.creatorRibeiro, Grazielle Alves
dc.creatorBotelho, Ana Flavia Machado
dc.creatorRocha, Peter
dc.creatorVieira, Leda Quercia
dc.creatorCruz, Jader Santos
dc.creatorRoman-Campos, Danilo
dc.date.accessioned2025-05-30T19:50:42Z
dc.date.available2025-05-30T19:50:42Z
dc.date.issued2020-03
dc.description.abstractChagas Disease (CD) is one of the leading causes of heart failure and sudden death in Latin America. Treatments with antioxidants have provided promising alternatives to ameliorate CD. However, the specific roles of major reactive oxygen species (ROS) sources, including NADPH-oxidase 2 (NOX2), mitochondrial-derived ROS and nitric oxide (NO) in the progression or resolution of CD are yet to be elucidated. We used C57BL/6 (WT) and a gp91PHOX knockout mice (PHOX-/-), lacking functional NOX2, to investigate the effects of ablation of NOX2-derived ROS production on the outcome of acute chagasic cardiomyopathy. Infected PHOX-/- cardiomyocytes displayed an overall pro-arrhythmic phenotype, notably with higher arrhythmia incidence on ECG that was followed by higher number of early afterdepolarizations (EAD) and 2.5-fold increase in action potential (AP) duration alternans, compared to AP from infected WT mice. Furthermore, infected PHOX-/- cardiomyocytes display increased diastolic [Ca2+], aberrant Ca2+ transient and reduced Ca2+ transient amplitude. Cardiomyocyte contraction is reduced in infected WT and PHOX-/- mice, to a similar extent. Nevertheless, only infected PHOX-/- isolated cardiomyocytes displayed significant increase in non-triggered extra contractions (appearing in ~75% of cells). Electro-mechanical remodeling of infected PHOX-/—cardiomyocytes is associated with increase in NO and mitochondria-derived ROS production. Notably, EADs, AP duration alternans and in vivo arrhythmias were reverted by pre-incubation with nitric oxide synthase inhibitor L-NAME. Overall our data show for the first time that lack of NOX2-derived ROS promoted a pro-arrhythmic phenotype in the heart, in which the crosstalk between ROS and NO could play an important role in regulating cardiomyocyte electro-mechanical function during acute CD. Future studies designed to evaluate the potential role of NOX2-derived ROS in the chronic phase of CD could open new and more specific therapeutic strategies to treat CD and prevent deaths due to heart complications.
dc.identifier.citationSANTOS-MIRANDA, Artur et al. Reactive oxygen species and nitric oxide imbalances lead to in vivo and in vitro arrhythmogenic phenotype in acute phase of experimental Chagas disease. PLOS Pathogens, San Francisco, v. 16, n. 3, e1008379, 2020. DOI: 10.1371/journal.ppat.1008379. Disponível em: https://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1008379. Acesso em: 16 maio 2025.
dc.identifier.doi10.1371/journal.ppat.1008379
dc.identifier.issn1553-7366
dc.identifier.issne- 1553-7374
dc.identifier.urihttp://repositorio.bc.ufg.br//handle/ri/27617
dc.language.isoeng
dc.publisher.countryOutros
dc.publisher.departmentEscola de Veterinária e Zootecnia - EVZ (RMG)
dc.rightsAcesso Aberto
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subjectCardiomyocytes
dc.subjectTrypanosoma cruzi
dc.subjectArrhythmia
dc.subjectParasitic diseases
dc.subjectSarcomeres
dc.subjectHeart
dc.subjectNitric oxide
dc.subjectMuscle contraction
dc.titleReactive oxygen species and nitric oxide imbalances lead to in vivo and in vitro arrhythmogenic phenotype in acute phase of experimental Chagas disease
dc.typeArtigo

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