Search Results - "Casquel De Tomasi, Loreta"
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Hypoxia-Inducible Factor 1-Alpha and Glucose Metabolism during Cardiac Remodeling Progression from Hypertrophy to Heart Failure
Published in International journal of molecular sciences (25-03-2023)“…In pathological cardiac hypertrophy, the heart is more dependent on glucose than fatty acids. This shift in energy metabolism occurs due to several factors,…”
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2
Pathological hypertrophy and cardiac dysfunction are linked to aberrant endogenous unsaturated fatty acid metabolism
Published in PloS one (01-03-2018)“…Pathological cardiac hypertrophy leads to derangements in lipid metabolism that may contribute to the development of cardiac dysfunction. Since previous…”
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3
Effects of Growth Hormone on Cardiac Remodeling During Resistance Training in Rats
Published in Arquivos brasileiros de cardiologia (01-01-2016)“…Although the beneficial effects of resistance training (RT) on the cardiovascular system are well established, few studies have investigated the effects of the…”
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4
Obesity does not lead to imbalance between myocardial phospholamban phosphorylation and dephosphorylation
Published in Arquivos brasileiros de cardiologia (01-07-2014)“…The activation of the beta-adrenergic system promotes G protein stimulation that, via cyclic adenosine monophosphate (cAMP), alters the structure of protein…”
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5
Cardiac Dysfunction Induced by Obesity Is Not Related to β-Adrenergic System Impairment at the Receptor-Signalling Pathway
Published in PloS one (21-09-2015)“…Obesity has been shown to impair myocardial performance. Some factors have been suggested as responsible for possible cardiac abnormalities in models of…”
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6
Myocardial Dysfunction after Severe Food Restriction Is Linked to Changes in the Calcium-Handling Properties in Rats
Published in Nutrients (22-08-2019)“…Severe food restriction (FR) impairs cardiac performance, although the causative mechanisms remain elusive. Since proteins associated with calcium handling may…”
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7
Decreased Collagen Type I is Associated with Increased Metalloproteinase-2 Activity and Protein Expression of Leptin in the Myocardium of Obese Rats
Published in Arquivos brasileiros de cardiologia (01-07-2020)“…Obesity is a risk factor for medical complications, including the cardiovascular system. There is limited information on collagen in the heart in obesity. Our…”
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A Redução do Colágeno Tipo I está Associada ao Aumento da Atividade da Metaloproteinase-2 e da Expressão Proteica de Leptina no Miocárdio de Ratos Obesos
Published in Arquivos brasileiros de cardiologia (28-07-2020)“…Resumo Fundamento A obesidade é um fator de risco para complicações médicas, incluindo o sistema cardiovascular. Há informações limitadas sobre o colágeno no…”
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9
Increased angiotensin II from adipose tissue modulates myocardial collagen I and III in obese rats
Published in Life sciences (1973) (01-07-2020)“…It has been described that the cardiac dysfunction in the obesity model is because of collagen imbalance and that angiotensin II (Ang II) contributes to…”
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10
Cardiac Dysfunction Induced by Obesity Is Not Related to [beta]-Adrenergic System Impairment at the Receptor-Signalling Pathway
Published in PloS one (21-09-2015)“…Obesity has been shown to impair myocardial performance. Some factors have been suggested as responsible for possible cardiac abnormalities in models of…”
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11
Effects of a high‐fat diet on the cardiac dysfunction and energy metabolism in rats with supravalvar aortic stenosis
Published in The FASEB journal (01-04-2013)“…Abstract only…”
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12
A Redução do Colágeno Tipo I está Associada ao Aumento da Atividade da Metaloproteinase-2 e da Expressão Proteica de Leptina no Miocárdio de Ratos Obesos
Published in Arquivos brasileiros de cardiologia (2020)“…Resumo Fundamento A obesidade é um fator de risco para complicações médicas, incluindo o sistema cardiovascular. Há informações limitadas sobre o colágeno no…”
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13
Food restriction promotes downregulation of myocardial L-type Ca2+ channels
Published in Canadian journal of physiology and pharmacology (01-06-2009)“…Food restriction (FR) has been shown to impair myocardial performance. However, the mechanisms behind these changes in myocardial function due to FR remain…”
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