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October 17, 1991New England Journal of Medicine345 citations

Suppression of Thromboxane A2but Not of Systemic Prostacyclin by Controlled-Release Aspirin

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RCRobert ClarkeGMGail MayoPPPatricia Price

Key Result

Controlled-release aspirin (75 mg) inhibited thromboxane A2 similarly to immediate-release aspirin but preserved the 5- to 6-fold bradykinin-induced increase in prostacyclin.

Structured PICO

Does controlled-release aspirin suppress thromboxane A2 without suppressing systemic prostacyclin in normal volunteers compared to immediate-release aspirin?

P
Population
Normal volunteers
I
Intervention
Controlled-release aspirin 75 mg (designed to release 10 mg per hour), with or without a single loading dose of 162.5 mg immediate-release aspirin
C
Comparator
Conventional immediate-release aspirin (75 mg, 162.5 mg daily, or 325 mg on alternate days)
O
Outcome
Plasma levels of aspirin and salicylate, serum levels of thromboxane B2, and urinary dinor metabolites of prostacyclin and thromboxane B2surrogate

Controlled-release aspirin effectively inhibits platelet thromboxane A2 production while preserving beneficial prostacyclin synthesis, offering a potentially improved pharmacological profile over immediate-release aspirin.

Abstract

BACKGROUND: The antithrombotic efficacy of aspirin is attributed to its inhibition of the enzyme prostaglandin G/H synthase, which is necessary for the formation of thromboxane A2 in platelets. Thromboxane A2 is a potent vasoconstrictor and platelet agonist. However, the formation of prostacyclin by vascular endothelium also requires prostaglandin G/H synthase, and prostacyclin exerts opposite effects on platelet function and vascular tone. We wanted to see whether controlled-release aspirin would affect the formation of thromboxane A2 but not prostacyclin by reducing the aspirin concentration that reaches the posthepatic circulation. METHODS: A controlled-release formulation containing 75 mg of aspirin, designed to release 10 mg per hour, was developed to inhibit prostaglandin G/H synthase in platelets in the prehepatic circulation. The effects of the controlled-release preparation on plasma levels of aspirin and salicylate, serum levels of thromboxane B2, and urinary dinor metabolites of prostacyclin and thromboxane B2 (measured by gas chromatography-mass spectrometry) were compared with those of conventional immediate-release aspirin in normal volunteers. Prostacyclin release was stimulated by intravenous bradykinin. RESULTS: Steady-state inhibition of serum thromboxane B2 required two to four days and appeared slower with 75 mg of controlled-release than with the same amount of immediate-release aspirin. Maximal inhibition was achieved rapidly by adding a single loading dose of 162.5 mg of immediate-release aspirin to the regimen. Over a 28-day period, suppression of thromboxane A2 with this regimen was comparable to that with immediate-release aspirin taken either as 162.5 mg daily or as 325 mg on alternate days, despite the minimal systemic bioavailability of controlled-release aspirin. Bleeding time was prolonged to a similar degree with each of the three regimens. The five- to sixfold increase in the prostacyclin metabolite induced by bradykinin was depressed by pretreatment for four days with 75 mg of immediate-release aspirin, but not by 75 mg of controlled-release aspirin. CONCLUSIONS: Maximal inhibition of platelet thromboxane A2 production was sustained during long-term dosing with controlled-release aspirin, whereas basal prostacyclin biosynthesis fell only slightly and systemic synthesis of prostacyclin stimulated by bradykinin was preserved. Controlled-release aspirin may facilitate determination of the clinical importance of preserving prostacyclin during platelet inhibition in humans.

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Cite This Study

Clarke et al. (1991) studied this question. Controlled-release aspirin (75 mg) inhibited thromboxane A2 similarly to immediate-release aspirin but preserved the 5- to 6-fold bradykinin-induced increase in prostacyclin.

synapsesocial.com/papers/6a0cfbb1b31ab1d6e01e7691https://doi.org/10.1056/nejm199110173251605
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Inhibition of platelet prostaglandin synthetase by oral aspirin.1978 · 558 citations
  2. 2The Effects of Aspirin on Megakaryocyte Prostaglandin Production1980 · 41 citations
  3. 3Protective Effects of Aspirin against Acute Myocardial Infarction and Death in Men with Unstable Angina1983 · 1,719 citations
  4. 4Human platelet/erythroleukemia cell prostaglandin G/H synthase: cDNA cloning, expression, and gene chromosomal assignment1991 · 576 citations
  5. 5Dose-Related Kinetics of Aspirin1984 · 558 citations