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Cyclooxygenase inhibition decreases nitric oxide synthase activity in human platelets

L Chen1, M N Salafranca, J L Mehta

  • 1Department of Medicine, University of Florida and Veterans Affairs Medical Center, Gainesville 32610-0277, USA.

Insights

Cyclooxygenase (COX) inhibitors reduce nitric oxide (NO) synthase activity in human platelets. This inhibition is linked to reduced thromboxane A2 and calcium levels, impacting platelet function.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Platelet Physiology

Background:

  • Nitric oxide (NO) synthase (NOS) and cyclooxygenase (COX) are key regulators of platelet function.
  • NO is known to activate COX, but the reciprocal regulation of NOS by COX products was unclear.

Purpose of the Study:

  • To investigate whether products of the COX pathway influence NOS activity in human platelets.
  • To elucidate the role of thromboxane A2 and intracellular calcium in this interaction.

Main Methods:

  • Human platelets were treated with COX inhibitors (aspirin, indomethacin), a thromboxane A2 synthase inhibitor (U-63557A), or a thromboxane A2 receptor blocker (SQ-29548).
  • Nitric oxide synthase (NOS) activity was assessed by measuring L-citrulline and nitrite/nitrate formation.
  • Changes in cytosolic calcium concentration ([Ca2+]i) and cyclic GMP levels were monitored.

Main Results:

  • COX inhibitors (aspirin, indomethacin) decreased NOS activity and [Ca2+]i in a concentration-dependent manner.
  • These inhibitory effects were reversed by thromboxane A2 analog (U-46619) or excess calcium.
  • Thromboxane A2 pathway inhibition also reduced NOS activity, mimicking COX inhibitor effects without altering NOS protein expression.

Conclusions:

  • COX inhibitors suppress NOS activity in human platelets.
  • This suppression is partly mediated by the reduction of thromboxane A2 production and intracellular calcium mobilization.
  • The findings reveal a feedback mechanism where COX products regulate NOS activity in platelets.

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