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L-Arginine and chronic exercise reduce oxidative stress. However, it is unclear how they affect cardiomyocytes during cardiovascular disease (CVD) development. The aim of this research was to investigate the possible effects of L-arginine supplementation and aerobic training on systemic oxidative stress and their consequences on cardiomyocytes during cardiometabolic disease onset caused by excess fructose. Wistar rats were allocated into four groups: control (C), fructose (F, 10% fructose in water), fructose training (FT; moderate running, 50-70% of the maximal velocity), and fructose arginine (FA; 880 mg/kg/day). Fructose was given for two weeks and fructose plus treatments for the subsequent eight weeks. Body composition, blood glucose, insulin, lipid profile, lipid peroxidation, nitrite, metalloproteinase-2 (MMP-2) activity, left ventricle histological changes, microRNA-126, -195, and -146, eNOS, p-eNOS, and TNF-α expressions were analyzed. Higher abdominal fat mass, triacylglycerol level, and insulin level were observed in the F group, and both treatments reversed these alterations. Myocardial vascularization was impaired in fructose-fed groups, except in FT. Cardiomyocyte hypertrophy was observed in all fructose-fed groups. TNF-α levels were higher in fructose-fed groups than in the C group, and p-eNOS levels were higher in the FA than in the C and F groups. Lipid peroxidation was higher in the F group than in the FT and C groups. During CVD onset, moderate aerobic exercise reduced lipid peroxidation, and both training and L-arginine prevented metabolic changes caused by excessive fructose. Myocardial vascularization was impaired by fructose, and cardiomyocyte hypertrophy appeared to be influenced by pro-inflammatory and oxidative environments. LArginine L Arginine However (CVD development Larginine C, , (C) F, (F 10 water, water water) (FT running 5070% 5070 50 70% 70 50-70 velocity, velocity velocity) (FA 88 mg/kg/day. mgkgday mg/kg/day . mg kg day mg/kg/day) composition glucose profile nitrite metalloproteinase2 metalloproteinase 2 metalloproteinase- MMP2 MMP (MMP-2 activity microRNA126, microRNA126 microRNA 126, 126 microRNA-126 195, 195 -195 146, 146 -146 eNOS peNOS, peNOS p TNFα TNF α analyzed mass alterations fructosefed fed proinflammatory pro inflammatory environments (C 1 507 5 7 50-7 8 (MMP- microRNA12 12 microRNA-12 19 -19 14 -14 50- (MMP microRNA1 microRNA-1 -1 microRNA- -