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January 1, 1997Hypertension205 citationsOpen Access

Cyclooxygenase Inhibition Restores Nitric Oxide Activity in Essential Hypertension

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STStefano TaddeiAVAgostino VirdisLGLorenzo Ghiadoni

Key Result

Cyclooxygenase inhibition with indomethacin restored nitric oxide-mediated vasodilation to acetylcholine in essential hypertensive patients (maximum flow increase 635% vs 458%; P<0.01).

Key Points

  • This research investigates the impact of cyclooxygenase inhibition on nitric oxide-mediated vasodilation in individuals with essential hypertension.
  • Participants included seven normotensive and seven essential hypertensive subjects, testing forearm blood flow response to intrabrachial acetylcholine with and without COX and NOS inhibitors.
  • Vasodilation responses were measured using strain-gauge plethysmography under various conditions: indomethacin (COX inhibitor) and L-NMMA (NOS inhibitor).
  • An adjunctive analysis was performed with L-arginine to evaluate NO synthase substrate effects in the same groups.
  • In hypertensive patients, indomethacin significantly increased acetylcholine-induced vasodilation (maximum flow increase: 635 +/- 53%; P < .01).
  • Indomethacin restored the inhibitory effect of L-NMMA in hypertensives (maximum flow increase: 445 +/- 36%; P < .01).
  • In the follow-up with L-arginine, indomethacin again enhanced vasodilation in hypertensives (maximum flow increase: 592 +/- 38%; P < .01).

Structured PICO

Does cyclooxygenase inhibition restore nitric oxide-mediated vasodilation in patients with essential hypertension?

P
Population
28 subjects (14 normotensive and 14 with essential hypertension) undergoing forearm blood flow evaluation with intrabrachial infusions.
I
Intervention
Intrabrachial infusion of acetylcholine in combination with L-NMMA (nitric oxide synthase inhibitor), indomethacin (cyclooxygenase inhibitor), or L-arginine (NO synthase substrate).
C
Comparator
Basal conditions (acetylcholine alone) and normotensive control subjects.
O
Outcome
Forearm blood flow modifications measured by strain-gauge plethysmography.surrogate

Cyclooxygenase inhibition with indomethacin restores nitric oxide-mediated vasodilation in essential hypertension, suggesting that COX-dependent constrictors impair NO production.

Main Result

Absolute Event Rate: 635% vs 458%

p-value: p=< .01

Abstract

To evaluate whether cyclooxygenase constrictor substances can impair nitric oxide-mediated vasodilation in essential hypertension, in seven normotensive subjects (43.3 +/- 4.1 years; BP, 117 +/- 6/81 +/- 2 mm Hg) and seven essential hypertensive patients (47.1 +/- 5.2 years; BP, 151 +/- 8/98 +/- 4 mm Hg) we studied forearm blood flow (strain-gauge plethysmography) modifications induced by intrabrachial acetylcholine (0.15, 0.45, 1.5, 4.5, 15 micrograms.100 mL-1.min-1) in basal conditions, during infusion of NG-monomethyl-L-arginine (L-NMMA; 100 micrograms.100 mL-1.min-1), a nitirc oxide synthase inhibitor, or indomethacin (50 micrograms.100 mL-1.min-1), a cyclooxygenase inhibitor, or simultaneous indomethacin and L-NMMA. In normotensives, vasodilation to acetylcholine was blunted by L-NMMA (maximum flow increase: 671 +/- 64% and 386 +/- 42%, respectively; P < .01), and this effect was unchanged by indomethacin. In contrast, in hypertensive patients, vasodilation to acetylcholine (maximum flow increase: 458 +/- 33%) was unchanged by L-NMMA. Indomethacin significantly (P < .01) increased the response to acetylcholine (maximum flow increase: 635 +/- 53%) and restored the inhibitory effect of L-NMMA (maximum flow increase: 445 +/- 36%; P < .01 versus indomethacin alone). In an adjunctive seven normotensives (51.4 +/- 4.2 years; BP, 114 +/- 5/79 +/- 3 mm Hg) and seven essential hypertensives (53.2 +/- 7.6 years; BP, 153 +/- 9/100 +/- 3 mm Hg) we repeated the same protocol by replacing L-NMMA with L-arginine (200 micrograms.100 mL-1.min-1), the substrate for NO synthase. In normotensives, vasodilation to acetylcholine was increased by L-arginine (maximum flow increase: 539 +/- 48% and 806 +/- 61%, respectively) and this effect was unchanged by indomethacin. In hypertensive patients, vasodilation to acetylcholine (maximum flow increase: 339 +/- 32%) was unchanged by L-arginine but was significantly (P < .01) increased by indomethacin (maximum flow increase: 592 +/- 38%). Moreover, indomethacin restored the facilitatory effect of L-arginine (maximum flow increase: 804 +/- 56%; P < .01 versus indomethacin alone). Therefore, cyclooxygenase inhibition restores nitric oxide-mediated vasodilation in essential hypertension, suggesting that cyclooxygenase-dependent substances can impair nitric oxide production.

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Cite This Study

Taddei et al. (1997) studied Essential hypertension (n=28). Indomethacin vs. Basal conditions (no indomethacin) was evaluated on Maximum forearm blood flow increase to acetylcholine (p=< .01). Cyclooxygenase inhibition with indomethacin restored nitric oxide-mediated vasodilation to acetylcholine in essential hypertensive patients (maximum flow increase 635% vs 458%; P<0.01).

synapsesocial.com/papers/6a22489321b01fc9abab4d1dhttps://doi.org/10.1161/01.hyp.29.1.274
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