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June 1, 1989Journal of Lipid Research116 citationsOpen Access

Binding of apoE-rich high density lipoprotein particles by saturable sites on human blood platelets inhibits agonist-induced platelet aggregation.

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KDKalpna DesaiKBK. Richard BruckdorferRHR A Hutton

Key Result

Binding of apoE-rich high density lipoprotein (HDL-E) particles to saturable sites on human blood platelets (4,200 sites/platelet, KD 7.9 x 10(-7) M) inhibits agonist-induced platelet aggregation.

Structured PICO

Does binding of apoE-rich high density lipoprotein particles inhibit agonist-induced platelet aggregation in human blood platelets?

P
Population
Human blood platelets (washed platelet suspensions)
I
Intervention
ApoE-rich high density lipoprotein particles (HDL-E)
O
Outcome
Agonist-induced platelet aggregation and HDL-E binding to saturable sitessurrogate

ApoE-rich HDL particles bind to specific saturable receptors on human platelets, inhibiting agonist-induced platelet aggregation.

Abstract

High density lipoproteins (HDL, d 1.063-1.21 g/ml) are reported to stimulate, to have no effect on, or to inhibit agonist-induced platelet aggregation. We have hypothesized that these conflicting reports might be explained by opposing effects of individual HDL subclasses on platelet aggregability. Physiologic concentrations of HDL3 had little effect on ADP-induced aggregation of washed platelet suspensions, although higher levels were stimulatory. Normal concentrations of HDL2 (0.2-0.4 mg of protein/ml) inhibited aggregation; further fractionation by heparin-Sepharose chromatography identified the particles rich in apolipoprotein E, termed HDL-E, as the major anti-aggregatory subclass. Washed platelets bound radioiodinated HDL-E to a uniform class of saturable sites; they numbered 4,200 per platelet and the KD was 7.9 x 10(-7) M. Binding of HDL-E by platelets, and its anti-aggregatory action, showed a similar rapidity and both occurred within the physiologic concentration range. Moreover, the two processes were independent of the presence of divalent ions and were impaired by chemical modification of the apolipoprotein constituents of HDL-E. We conclude that occupation of cell-surface receptors by HDL-E particles impairs platelet responsiveness to exogenous agonists and that platelet aggregability in the presence of whole HDL may reflect the relative concentrations of the individual subclasses in the particular sample.

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Cite This Study

Desai et al. (1989) studied Platelet aggregation. apoE-rich high density lipoprotein (HDL-E) particles vs. HDL3 was evaluated on Agonist-induced platelet aggregation. Binding of apoE-rich high density lipoprotein (HDL-E) particles to saturable sites on human blood platelets (4,200 sites/platelet, KD 7.9 x 10(-7) M) inhibits agonist-induced platelet aggregation.

synapsesocial.com/papers/6a17323ceae9613b5fbde71bhttps://doi.org/10.1016/s0022-2275(20)38312-7
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Also Consider

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

  1. 1Platelet Function and Serum High Density Lipoproteins1979 · 29 citations
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  5. 5A Problem and A Solution1978 · 17 citations