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January 1, 2008Molecular Medicine151 citationsOpen Access

The Antithrombotic Effect of Angiotensin-(1-7) Involves Mas-Mediated NO Release from Platelets

RFRodrigo A. Fraga-SilvaSPSérgio Veloso Brant PinheiroAGAndrey Christian Costa Gonçalves

Key Result

Angiotensin-(1-7) significantly inhibited thrombus formation in wild-type mice, reducing thrombus weight from 0.76 mg to 0.34 mg, an effect that was completely abolished in Mas-deficient mice.

Structured PICO

P
Population
Male Wistar rats and C57BL/6 mice (wild-type and Mas-knockout) used in an experimental basic science study to investigate the antithrombotic mechanisms of Angiotensin-(1-7).
I
Intervention
Angiotensin-(1-7)
C
Comparator
Mas antagonist A-779; Mas(-/-) mice compared to Mas(+/+) mice
O
Outcome
Thrombus formation in the vena cava, NO release from platelets, and bleeding timesurrogate

Angiotensin-(1-7) exerts an antithrombotic effect in vivo that is dependent on the Mas receptor and involves Mas-mediated NO release from platelets.

Main Result

Absolute Event Rate: 0.34% vs 0.76%

p-value: p=<0.01

Limitations

  • The study could not ascertain whether the absence of the antithrombotic effect in Mas-/- mice is due mainly to the lack of endothelium-mediated mechanisms, platelet-mediated NO release, or both.
  • Did not observe a significant increase in venous thrombus formation induced by ferric chloride in Mas-/- mice despite decreased bleeding time.
  • Did not assess the effect of Ang-(1-7) on intraplatelet calcium levels or platelet aggregation assays.

Abstract

The antithrombotic effect of angiotensin(Ang)-(1-7) has been reported, but the mechanism of this effect is not known. We investigated the participation of platelets and receptor Mas-related mechanisms in this action. We used Western blotting to test for the presence of Mas protein in rat platelets and used fluorescent-labeled FAM-Ang-(1-7) to determine the specific binding for Ang-(1-7) and its displacement by the receptor Mas antagonist A-779 in rat platelets and in Mas(-/ -) and Mas(+/+) mice platelets. To test whether Ang-(1-7) induces NO release from platelets, we used the NO indicator DAF-FM. In addition we examined the role of Mas in the Ang-(1-7) antithrombotic effect on induced thrombi in the vena cava of male Mas(-/ -) and Mas(+/+) mice. The functional relevance of Mas in hemostasis was evaluated by determining bleeding time in Mas(+/+) and Mas(-/ -) mice. We observed the presence of Mas protein in platelets, as indicated by Western Blot, and displacement of the binding of fluorescent Ang-(1-7) to rat platelets by A-779. Furthermore, in Mas(+/+) mouse platelets we found specific binding for Ang-(1-7), which was absent in Mas(-/ -) mouse platelets. Ang-(1-7) released NO from rat and Mas(+/+) mouse platelets, and A-779 blocked this effect. The NO release stimulated by Ang-(1-7) was abolished in Mas(-/ -) mouse platelets. Ang-(1-7) inhibited thrombus formation in Mas(+/+) mice. Strikingly, this effect was abolished in Mas(-) (/) (-)mice. Moreover, Mas deficiency resulted in a significant decrease in bleeding time (8.50 +/- 1.47 vs. 4.28 +/- 0.66 min). This study is the first to show the presence of Mas protein and specific binding for Ang-(1-7) in rat and mouse platelets. Our data also suggest that the Ang-(1-7) antithrombotic effect involves Mas-mediated NO release from platelets. More importantly, we showed that the antithrombotic effect of Ang-(1-7) in vivo is Mas dependent and that Mas is functionally important in hemostasis.

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Cite This Study

Fraga-Silva et al. (2008) studied Thrombosis. Angiotensin-(1-7) vs. Vehicle was evaluated on Thrombus weight (mg) (p=<0.01). Angiotensin-(1-7) significantly inhibited thrombus formation in wild-type mice, reducing thrombus weight from 0.76 mg to 0.34 mg, an effect that was completely abolished in Mas-deficient mice.

synapsesocial.com/papers/6a6f52d62163a0a01bc3a37ehttps://doi.org/10.2119/2007-00073.fraga-silva
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