Vanessa Duarte Ortiz
Universidade Federal do Rio Grande do Sul
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Publication
Featured researches published by Vanessa Duarte Ortiz.
Journal of Nutritional Biochemistry | 2016
Rafael Oliveira Fernandes; Alexandre Luz de Castro; Jéssica Hellen Poletto Bonetto; Vanessa Duarte Ortiz; Dalvana Daneliza Muller; Cristina Campos-Carraro; Sílvia Barbosa; Laura Tartari Neves; Léder Leal Xavier; Paulo Cavalheiro Schenkel; Pawan K. Singal; Neelam Khaper; Alex Sander da Rosa Araujo; Adriane Belló-Klein
This study investigated whether sulforaphane (SFN), a compound found in cruciferous vegetables, could attenuate the progression of post-myocardial infarction (MI) cardiac remodeling. Male Wistar rats (350 g) were allocated to four groups: SHAM (n=8), SHAM+SFN (n=7), MI (n=8) and MI+SFN (n=5). On the third day after surgery, cardiac function was assessed and SFN treatment (5 mg/kg/day) was started. At the end of 25 days of treatment, cardiac function was assessed and heart was collected to measure collagen content, oxidative stress and protein kinase. MI and MI+SFN groups presented cardiac dysfunction, without signs of congestion. Sulforaphane reduced fibrosis (2.1-fold) in infarcted rats, which was associated with a slight attenuation in the cardiac remodeling process. Both infarcted groups presented increases in the oxidative markers xanthine oxidase and 4-hydroxinonenal, as well as a parallel increase in the antioxidant enzymes glutathione peroxidase and superoxide dismutase. Moreover, sulforaphane stimulated the cytoprotective heme oxygenase-1 (HO-1) (38%). Oxidative markers correlated with ERK 1/2 activation. In the MI+SFN group, up-regulation of ERK 1/2 (34%) and Akt (35%), as well as down-regulation of p38 (52%), was observed. This change in the prosurvival kinase balance in the MI+SFN group was related to a down-regulation of apoptosis pathways (Bax/Bcl-2/caspase-3). Sulforaphane was unable to modulate autophagy. Taken together, sulforaphane increased HO-1, which may generate a redox environment in the cardiac tissue favorable to activation of prosurvival and deactivation of prodeath pathways. In conclusion, this natural compound contributes to attenuation of the fibrotic process, which may contribute to mitigation against the progression of cardiac remodeling postinfarction.
British Journal of Pharmacology | 2017
Denise dos Santos Lacerda; Patrick Turck; Bruna Gazzi de Lima-Seolin; Rafael Colombo; Vanessa Duarte Ortiz; Jéssica Hellen Poletto Bonetto; Cristina Campos-Carraro; Sara Elis Bianchi; Adriane Belló-Klein; Valquiria Linck Bassani; Alex Sander da Rosa Araujo
In cor pulmonale, the increased afterload imposed on the right ventricle (RV) generates a maladaptive response, impairing the contractile cardiac function. Oxidative mechanisms play an important role in the pathophysiology and progression of this disease. The administration of pterostilbene (PTS), a phytophenol with antioxidant potential, may represent a therapeutic option. In the present study, we evaluated the effect of PTS complexed with hydroxypropyl‐β‐cyclodextrin (HPβCD) on hypertrophy, contractile function and oxidative parameters in the RV of rats with pulmonary hypertension, induced by the administration of monocrotaline (MCT).
Life Sciences | 2016
Giana Blume Corssac; Alexandre Luz de Castro; Angela Maria Vicente Tavares; Cristina Campos; Rafael Oliveira Fernandes; Vanessa Duarte Ortiz; Rafaela Siqueira; Tânia G. Fernandes; Adriane Belló-Klein; Alex Sander da Rosa Araujo
UNLABELLED Right ventricle (RV) dysfunction post-myocardial infarction (MI) was associated with a worsened prognosis. In this scenario, reactive oxygen species (ROS) are related with the progression from MI to heart failure. Previous work showed that thyroid hormones (TH) are cardioprotective after MI. AIMS This study aims to investigate the effect of T3 and T4 administration on oxidative stress and angiogenesis parameters in the RV after MI. MAIN METHODS Wistar rats were allocated into four groups: Sham-operated (SHAM), infarcted (AMI), sham-operated + TH (SHAMT), and infarcted+TH (AMIT). The treated groups received T3 (2 μg/100g/day) and T4 (8 μg/100g/day) by gavage for 26 days. After this, echocardiographic analysis was performed and the RV was collected to western blot and biochemical analysis. KEY FINDINGS Infarcted treated rats showed RV hypertrophy compared with AMI and SHAMT. Hydrogen peroxide levels were decrease and SOD activity and expression were increased in the infarcted treated rats. Besides that, the hormonal administration increased eNOS expression and prevented the reduction of VEGF levels in AMIT rats. SIGNIFICANCE In conclusion, TH seems to improve oxidative stress parameters, to promote physiological hypertrophy and to increase the expression of proteins involved with angiogenesis in the right heart.
Free Radical Research | 2018
Denise dos Santos Lacerda; Vanessa Duarte Ortiz; Patrick Turck; Cristina Campos-Carraro; Alexsandra Zimmer; Rayane Brinck Teixeira; Sara Elis Bianchi; Alexandre Luz de Castro; Paulo Cavalheiro Schenkel; Adriane Belló-Klein; Valquiria Linck Bassani; Alex Sander da Rosa Araujo
Abstract Oxidative stress alters signalling pathways for survival and cell death favouring the adverse remodelling of postmyocardial remnant cardiomyocytes, promoting functional impairment. The administration of pterostilbene (PTS), a phytophenol with antioxidant potential, can promote cardioprotection and represents a therapeutic alternative in acute myocardial infarction (AMI). The present study aims to explore the effects of oral administration of PTS complexed with hydroxypropyl-β-cyclodextrin HPβCD (PTS:HPβCD complex) on the glutathione cycle, thiol protein activities and signalling pathways involving the protein kinase B (AKT) and glycogen synthase kinase-3β (GSK-3β) proteins in the left ventricle (LV) of infarcted rats. Animals were submitted to acute myocardial infarction through surgical ligation of the descending anterior branch of the left coronary artery and received over 8 days, by gavage, PTS:HPβCD complex at dose of 100 mg kg−1 day−1 (AMI + PTS group) or vehicle (aqueous solution with HPβCD) divided into Sham-operated (SHAM) and infarcted (AMI) groups. The results showed that the PBS: HPβCD complex decreased lipid peroxidation, prevented the decrease in thioredoxin reductase (TRxR) activity, and increased the activity of glutathione-S-transferase (GST) and glutaredoxin (GRx). Additionally, the expression of nuclear factor-erythroid two (Nrf2) and p-GSK-3β was increased, whereas the p-GSK-3β/GSK-3β ratio was reduced in the LV of the infarcted animals. Overall, the PTS:HPβCD complex modulates activity of thiol-dependent enzymes and induces to the expression of antioxidant proteins, improving systolic function and mitigating the adverse cardiac remodelling post infarction.
European Journal of Pharmacology | 2016
Vanessa Duarte Ortiz; Alexandre Luz de Castro; Cristina Campos; Rafael Oliveira Fernandes; Jéssica Hellen Poletto Bonetto; Rafaela Siqueira; Adriana Conzatti; Tânia G. Fernandes; Adriane Belló-Klein; Alex Sander da Rosa Araujo
Studies have shown a cardioprotective role of thyroid hormones (THs) in cardiac remodeling after acute myocardial infarction (MI). However, there is no data in the literature examining the influence of TH administration on the aortic tissue in an animal model of MI. This study aimed to evaluate the effects of thyroid hormones on the aorta after MI. Male Wistar rats were divided into a sham group (SHAM), infarcted group (AMI), sham+TH (SHAMT) and AMI+TH (AMIT). After MI, the animals received T3 and T4 (2 and 8μg/100g/day, respectively) by oral gavage for 12 days. Later, the animals underwent echocardiography and euthanasia and the aorta was collected for molecular and biochemical analysis. T3 and T4 administration increased the expression of the pro-angiogenic proteins vascular endothelial growth factor (VEGF) and hypoxia inducible factor 1α (HIF-1α) in the aorta of AMIT rats when compared with AMI. With respect to TH receptors, AMI rats presented a decrease in TRβ levels, which was prevented by the hormonal administration. In AMIT rats, both TRα and TRβ levels were increased when compared with the AMI group. Reactive oxygen species levels and NADPH oxidase activity were decreased in both treated groups when compared with the non-treated animals. TH administration after MI may improve angiogenic signaling in the aorta as well as the responsiveness of this vessel to T3 and T4. These positive effects in the aorta may result in additional protection for the cardiovascular system in the context of cardiac ischaemic injury.
Molecular and Cellular Endocrinology | 2017
Alexandre Luz de Castro; Rafael Oliveira Fernandes; Vanessa Duarte Ortiz; Cristina Campos; Jéssica Hellen Poletto Bonetto; Tânia G. Fernandes; Adriana Conzatti; Rafaela Siqueira; Angela Maria Vicente Tavares; Adriane Belló-Klein; Alex Sander da Rosa Araújo
Archive | 2017
Alexandre Roberto Hickmann; Patrick Turck; Denise dos Santos Lacerda; Cristina Campos Carraro; Vanessa Duarte Ortiz; Alan Christian Bahr; Schauana Freitas Fraga; Giana Blume Corssac; Adriane Belló-Klein; Alex Sander da Rosa Araújo
Archive | 2017
Schauana Freitas Fraga; Denise dos Santos Lacerda; Vanessa Duarte Ortiz; Patrick Turck; Cristina Campos Carraro; Alexandre Roberto Hickmann; Rayane Brinck Teixeira; Sara Elis Bianchi; Alexandre Luz de Castro; Adriane Belló-Klein; Valquiria Linck Bassani; Alex Sander da Rosa Araújo
Archive | 2017
Vanessa Duarte Ortiz; Patrick Turck; Rayane Brinck Teixeira; Bruna Gazzi de Lima Seolin; Denise dos Santos Lacerda; Alexandre Roberto Hickmann; Schauana Freitas Fraga; Tania Regina Gattelli Fernandes; Adriane Belló-Klein; Alexandre Luz de Castro; Alex Sander da Rosa Araújo
Archive | 2017
Luiza Mezzomo Donatti; Bruna Gazzi de Lima Seolin; Alexsandra Zimmer; Rayane Brinck Teixeira; Karina Rabello Casali; Nathane Santanna Felix; Patrick Turck; Giana Blume Corssac; Vanessa Duarte Ortiz; Adriane Belló-Klein
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Jéssica Hellen Poletto Bonetto
Universidade Federal do Rio Grande do Sul
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