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Moderate exercise training promotes adaptations in coronary blood flow and adenosine production in normotensive rats
Roque, Fernanda R; Soci, Ursula Paula Renó; Angelis, Katia De; Coelho, Marcele A; Furstenau, Cristina R; Vassallo, Dalton V; Irigoyen, Maria Claudia; Oliveira, Edilamar M.
  • Roque, Fernanda R; University of São Paulo. School of Physical Education and Sports. São Paulo. BR
  • Soci, Ursula Paula Renó; University of São Paulo. School of Physical Education and Sports. São Paulo. BR
  • Angelis, Katia De; Medical School of University of São Paulo. Heart Institute. São Paulo. BR
  • Coelho, Marcele A; University of São Paulo. School of Physical Education and Sports. São Paulo. BR
  • Furstenau, Cristina R; University of São Paulo. School of Physical Education and Sports. São Paulo. BR
  • Vassallo, Dalton V; Federal University of Espírito Santo. School of Medicine. Department of Physiological Sciences. Vitó ria. BR
  • Irigoyen, Maria Claudia; Medical School of University of São Paulo. Heart Institute. São Paulo. BR
  • Oliveira, Edilamar M; University of São Paulo. School of Physical Education and Sports. São Paulo. BR
Clinics ; 66(12): 2105-2111, 2011. ilus
Article in English | LILACS | ID: lil-609009
ABSTRACT

OBJECTIVES:

Aerobic exercise training prevents cardiovascular risks. Regular exercise promotes functional and structural adaptations that are associated with several cardiovascular benefits. The aim of this study is to investigate the effects of swimming training on coronary blood flow, adenosine production and cardiac capillaries in normotensive rats.

METHODS:

Wistar rats were randomly divided into two groups control (C) and trained (T). An exercise protocol was performed for 10 weeks and 60 min/day with a tail overload of 5 percent bodyweight. Coronary blood flow was quantified with a color microsphere technique, and cardiac capillaries were quantified using light microscopy. Adenine nucleotide hydrolysis was evaluated by enzymatic activity, and protein expression was evaluated by western blot. The results are presented as the means ± SEMs (p<0.05).

RESULTS:

Exercise training increased the coronary blood flow and the myocardial capillary-to-fiber ratio. Moreover, the circulating and cardiac extracellular adenine nucleotide hydrolysis was higher in the trained rats than in the sedentary rats due to the increased activity and protein expression of enzymes, such as E-NTPDase and 59- nucleotidase.

CONCLUSIONS:

Swimming training increases coronary blood flow, number of cardiac capillaries, and adenine nucleotide hydrolysis. Increased adenosine production may be an important contributor to the enhanced coronary blood flow and angiogenesis that were observed in the exercise-trained rats; collectively, these results suggest improved myocardial perfusion.
Subject(s)


Full text: Available Index: LILACS (Americas) Main subject: Physical Conditioning, Animal / Blood Pressure / Capillaries / Adaptation, Physiological / Adenosine / Coronary Circulation Limits: Animals Language: English Journal: Clinics Journal subject: Medicine Year: 2011 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Federal University of Espírito Santo/BR / Medical School of University of São Paulo/BR / University of São Paulo/BR

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Full text: Available Index: LILACS (Americas) Main subject: Physical Conditioning, Animal / Blood Pressure / Capillaries / Adaptation, Physiological / Adenosine / Coronary Circulation Limits: Animals Language: English Journal: Clinics Journal subject: Medicine Year: 2011 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Federal University of Espírito Santo/BR / Medical School of University of São Paulo/BR / University of São Paulo/BR