Resistance training reduces platelet activation in hypertensive women: the role of purinergic signaling

Author:

Cardoso Andréia Machado1,Aneli Nyasmin Mendes2,Lammers Mônica2,Mânica Aline3,Zanini Daniela1,Maciel Sarah Franco Vieira de Oliveira1,Sévigny Jean4,Corralo Vanessa da Silva3,De Sá Clodoaldo Antônio3

Affiliation:

1. Graduate Program in Biomedical Sciences

2. Medicine Course

3. Health Sciences Postgraduate Program, Community University of Chapecó Region, Chapecó, SC, Brazil

4. Département de microbiologie-infectiologie et d’immunologie, Faculté de Médecine and Centre de recherché du CHU de Québec, Université Laval, Québec City, Québec, Canada

Abstract

Background and aim: Essential arterial hypertension is a risk factor for stroke, myocardial infarction, heart failure, and arterial aneurysm, which are related to the activation of platelets. Purinergic signaling has a central role in platelet aggregation. Although ATP and ADP can act as a proaggregant agent, adenosine inhibits platelet aggregation and reduces vascular injury. Physical exercise exhibits antiaggregant properties and can modulate purinergic system. The aim of this study was to evaluate the effect of 6 months of resistance training on purinergic system components in platelets and on platelet activation, hemodynamic and anthropometric parameters in hypertensive woman. Method: A total of 31 hypertensive and 28 normotensive middle-aged sedentary women were submitted to 6 months of resistance training. Purinergic enzymes activities were assessed in platelets; ATP and Tromboxane B2 (TXB2) levels were measured in serum. Blood pressure (BP), BMI, and body fat were also measured. All variables were statistically analyzed, considering P value less than 0.05. Results: Six months of resistance training was able to significantly reduce BP, ATP, and TXB2 levels as well as NTPDase, ecto-5’nucleotidase, and ADA activities in hypertensive group. After 6 months of resistance training, purinergic system components and TXB2 of hypertensive group were similar to normotensive group in platelets, demonstrating that resistance training was able to modulate platelet activation. A positive correlation was found between BP, enzyme activities, and levels of ATP and TXB2. Conclusion: Our findings demonstrated the relationship between purinergic signaling and platelet activation in hypertension and suggests that resistance training serve as tool to reduce platelet aggregation in hypertensive woman by modulating purinergic system.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology,Internal Medicine

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