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January 1, 2005Platelets31 citations

Leukocyte count and leukocyte ecto-nucleotidase are major determinants of the effects of adenosine triphosphate and adenosine diphosphate on platelet aggregation in human blood

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JGJacqueline R. GlennUniversity of NottinghamAWAnn E. WhiteUniversity of NottinghamAJAndrew J. JohnsonNexor (United Kingdom)

Key Result

Raised leukocyte counts markedly reduced platelet aggregation to ADP (1-10 microM) and ATP (10-100 microM), but enhanced aggregation to ATP (1000 microM) (all p<0.001).

Structured PICO

P
Population
Patients with raised leukocyte counts (mean 46.2x10(3) leukocytes/microl) and normal blood samples evaluated for ex vivo platelet aggregation.
E
Exposure
Adenosine triphosphate (ATP) and adenosine diphosphate (ADP)
C
Comparator
Normal blood, platelet-rich plasma (PRP), and cell-free plasma
O
Outcome
Platelet aggregation measured by platelet countingsurrogate

Leukocytes modulate ATP- and ADP-induced platelet aggregation by dephosphorylating ATP to ADP and converting ADP to AMP and adenosine, with high white cell counts significantly altering this balance.

Main Result

p-value: p=<0.001

Abstract

ADP induces platelet aggregation in human whole blood and platelet-rich plasma (PRP). ATP induces aggregation in whole blood only; this involves leukocytes and is mediated by ADP. Here we studied ATP- and ADP-induced aggregation in patients with raised leukocyte counts (mean 46.2x10(3) leukocytes/microl). Platelet aggregation was measured by platelet counting. ATP, ADP and metabolites were measured by HPLC. Aggregation to ADP (1-10 microM) and ATP (10-100 microM) was markedly reduced, but to ATP (1000 microM) was enhanced (all p<0.001). Aggregation to ADP in PRP was normal. Increasing the leukocyte count in normal blood reproduced the findings in the patients. Adding leukocytes (either MNLs or PMNLs) to normal PRP enabled a response to ATP and caused marked inhibition of ADP-induced aggregation. Breakdown of ATP or ADP to AMP and adenosine in leukocyte-rich plasma was rapid (t1/2=4 min) and far higher than in cell-free plasma or PRP. With ATP there was also formation of ADP, maximal at 4 min. The presence of the ectonucleotidase NTPDase1 (CD39) was demonstrated on MNLs (all of the monocytes and a proportion of the lymphocytes) and all PMNLs by flow cytometry. We conclude that leukocytes provide a means of dephosphorylating ATP which enables ATP-induced aggregation via conversion to ADP, but also convert ADP to AMP and adenosine. Platelet aggregation extent is a balance between these activities, and high white cell counts influence this balance.

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Cite This Study

Glenn et al. (2005) studied Raised leukocyte counts. Raised leukocyte counts vs. Normal blood was evaluated on Platelet aggregation to ADP and ATP (p=<0.001). Raised leukocyte counts markedly reduced platelet aggregation to ADP (1-10 microM) and ATP (10-100 microM), but enhanced aggregation to ATP (1000 microM) (all p<0.001).

synapsesocial.com/papers/6a8acf5e210b9ed19c892b42https://doi.org/10.1080/09537100500063889
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Also Consider

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

  1. 1ADP can induce aggregation of human platelets <i>via</i> both P2Y<sub>1</sub> and P<sub><i>2T</i></sub> receptors2000 · 85 citations
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  3. 3Platelet Aggregation and Adenosine Diphosphate/Adenosine Triphosphate Receptors: A Historical Perspective2005 · 47 citations
  4. 4Platelet activation by polymorphonuclear leukocytes exposed to chemotactic agents1990 · 101 citations
  5. 5Interaction between ATP and catecholamines in stimulation of platelet aggregation2003 · 21 citations