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July 1, 1995Hypertension256 citations

Coronary Kinin Generation Mediates Nitric Oxide Release After Angiotensin Receptor Stimulation

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NSNahid SeyediXXXiaobin XuANAlberto Nasjletti

Key Result

Angiotensin peptides significantly increased nitrite release from canine coronary vessels (from 27 to up to 145 pmol/mg, P<.05) via activation of local kinin production.

Key Points

  • This research aims to understand how angiotensin peptides trigger nitric oxide release in canine heart vessels.
  • Incubated canine microvessels and large coronary arteries in phosphate-buffered saline for 20 minutes.
  • Measured nitrite release in response to various angiotensins and assessed the role of bradykinin and receptor antagonists.
  • Nitrite release significantly increased in response to angiotensin peptides with varying levels (P < .05).
  • Kinin formation was indicated by the inhibition of nitrite release using bradykinin B2 receptor antagonists and protease inhibitors.
  • Angiotensin type 1 and type 2 receptors were found to mediate nitrite release from most angiotensin fragments, with differences noted for Ang IV.

Structured PICO

P
Population
In vitro study using microvessels and large coronary arteries from normal canine hearts.
I
Intervention
Incubation with 10(-5) mol/L of Angiotensin I, II, III, IV, or Ang-(1-7) for 20 minutes
C
Comparator
Baseline/phosphate-buffered saline
O
Outcome
Nitrite releasesurrogate

Angiotensin peptides stimulate nitric oxide release in canine coronary vessels via activation of local kinin production.

Main Result

p-value: p=< .05

Abstract

Our goal was to determine whether angiotensin II (Ang II) and its metabolic fragments release nitric oxide and the mechanisms by which this occurs in blood vessels from the canine heart. We incubated 20 mg of microvessels or large coronary arteries in phosphate-buffered saline for 20 minutes and measured nitrite release. Nitrite release increased from 27 +/- 2 up to 103 +/- 5, 145 +/- 17, 84 +/- 4, 107 +/- 16, and 54 +/- 4 pmol/mg (P < .05) in response to 10(-5) mol/L of Ang I, II, III, IV, and Ang-(1-7), respectively. The effects of all angiotensins were blocked by N omega-nitro-L-arginine methyl ester (100 mumol/L), indicating that nitrite was a product of nitric oxide metabolism, and by Hoe 140 (10 mumol/L), a specific bradykinin B2 receptor antagonist, indicating a potential role for local kinin formation. The protease inhibitors aprotinin (10 mumol/L) and soybean trypsin inhibitor, which block local kinin formation, inhibited nitrite release by all of the angiotensins. Angiotensin nonselective (saralasin), type 1-specific (losartan), and type 2-specific (PD 123319) receptor antagonists abolished the nitrite released in response to all the fragments. Angiotensin type 1 and type 2 and receptors mediate nitrite release after Ang I, II, III, and Ang-(1-7), whereas only type 2 receptors mediate nitrite release after Ang IV. Similar results were obtained in large coronary arteries. In summary, formation of nitrite from coronary microvessels and large arteries in the normal dog heart in response to angiotensin peptides is due to the activation of local kinin production in the coronary vessel wall.

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Cite This Study

Seyedi et al. (1995) studied Normal dog heart. Angiotensin peptides (Ang I, II, III, IV, and Ang-(1-7)) vs. Baseline was evaluated on Nitrite release (p=< .05). Angiotensin peptides significantly increased nitrite release from canine coronary vessels (from 27 to up to 145 pmol/mg, P<.05) via activation of local kinin production.

synapsesocial.com/papers/6a22e8e3d72a377c8660cac5https://doi.org/10.1161/01.hyp.26.1.164
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