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February 1, 1979Blood71 citationsOpen Access

Concurrent studies of oxygen consumption and aggregation in stimulated human platelets

NBN. M. BresslerJohns Hopkins UniversityMBMJ BroekmanColumbia University Irving Medical CenterAMAJ MarcusLudwig-Maximilians-Universität München

Structured PICO

P
Population
Washed human platelets and stored human platelets
I
Intervention
Stimulation with collagen, thrombin, or arachidonic acid in the presence or absence of various inhibitors (eicosatetraynoic acid, indomethacin, ADP scavengers)
C
Comparator
Unstimulated platelets or platelets stimulated with different agents/inhibitors
O
Outcome
Concurrent measurement of oxygen consumption (O2 burst) and platelet aggregationsurrogate

Concurrent measurement of oxygen consumption and aggregation in human platelets reveals that the oxygen burst is linked to prostaglandin endoperoxide formation, which is not strictly required for collagen-induced aggregation.

Abstract

A new approach to the study of the “burst” of oxygen consumption in stimulated human platelets is described. Following addition of collagen, thrombin, or arachidonic acid to washed platelets, O2 consumption and aggregation were measured concurrently. In contrast to thrombin and arachidonic acid, collagen induced a calcium-dependent O2 burst after a lag phase of 25-35 sec. Elevation of platelet cAMP levels completely inhibited the oxygen burst and aggregation response. Blockade of energy metabolism also prevented the oxygen burst; however, the aggregation response was not completely suppressed. Eicosatetraynoic acid and indomethacin—inhibitors of arachidonic acid oxygenation—also abolished the collagen-induced O2 burst but not aggregation. These findings indicate that the platelet O2 burst is utilized for formation of prostaglandin endoperoxides, which are apparently not essential for collagen-induced aggregation. Comparison of the oxygen consumption and aggregation curves elicited by arachidonic acid in the presence of increasing amounts of ADP scavengers demonstrated the obligatory participation of released ADP in aggregation induced by this fatty acid. Stored platelets did not exhibit an oxygen burst when challenged by collagen or thrombin, although the aggregation response was relatively intact. In contrast, addition of arachidonic acid to stored platelets elicited both an O2 burst and aggregation, suggesting that phospholipase A2 activity, or steps leading to its activation, are more labile to storage than the platelet cyclooxygenase. It is concluded that concurrent comparison of oxygen consumption and aggregation responses permits a direct evaluation of the role of endoperoxide formation in human platelet aggregation.

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Cite This Study

Bressler et al. (1979) studied this question.

synapsesocial.com/papers/6a16f4b187c007abbc05412bhttps://doi.org/10.1182/blood.v53.2.167.167
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Also Consider

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

  1. 1Superoxide Anion and Hydroxyl Radical Release by Collagen-induced Platelet Aggregation - Role of Arachidonic Acid Metabolism2000 · 100 citations
  2. 2Role of arachidonic acid metabolism in human platelet activation and irreversible aggregation1985 · 28 citations
  3. 3PROSTAGLANDIN ENDOPEROXIDES, THROMBOXANE A<sub>2</sub> AND ADENOSINE DIPHOSPHATE IN COLLAGEN‐INDUCED AGGREGATION OF RABBIT PLATELETS1982 · 30 citations
  4. 4Effects of adenosine 3′:5′‐monophosphate and platelet aggregation on thromboxane biosynthesis in human platelets1979 · 10 citations
  5. 5Modulation of platelet function by reactive oxygen metabolites1994 · 68 citations