Related Experiment Videos
Enhancement of human platelet aggregation and secretion induced by rapamycin
A Babinska1, M S Markell, M O Salifu
1Department of Cell Biology and Anatomy, SUNY Health Science Center at Brooklyn, New York 11203, USA.
Background:
Rapamycin is a new immunosuppressive drug of the macrolide type. Despite binding to one of the FK-binding proteins as the initial step in intracellular action, further effects differ from those of the other fungally derived macrolides, cyclosporine and tacrolimus. We have previously demonstrated an enhancement of agonist-mediated platelet activation by cyclosporine and tacrolimus which was associated with increased phosphorylation of two intracellular platelet proteins, p20 and p40. Because rapamycin utilizes the same class of binding proteins as tacrolimus, but its action is not associated with the inhibition of calcineurin, we postulated that if the stimulatory effect of cyclosporine or tacrolimus was due to calcineurin inhibition, rapamycin should not affect platelets in a similar fashion.
Methods:
Normal, washed human platelets were treated with various concentrations of rapamycin (from ng to microg/ml), and pre-incubated at 37 degrees C with rapamycin for various periods (1-30 min). Several platelet functional parameters were measured in samples treated with rapamycin and these parameters were compared with control platelet samples treated with the vehicle for the same period. Platelet aggregations following exposure to ADP or to the thrombin equivalent, TRAP-6, were measured as changes in optical transmission in a Chronolog lumi-aggregometer. Each experiment was repeated at three or more times and the mean results were used for statistical comparison.
Results:
Rapamycin-treated platelets demonstrated an increase in their dose- and time-dependent sensitivity to ADP, resulting in a significantly enhanced primary wave of ADP-induced platelet aggregation followed by a secondary wave of aggregation, indicative of granule secretion. Furthermore, rapamycin-treated platelets showed significantly enhanced sensitivity to TRAP-6 as demonstrated by an increase in the initial velocity of aggregation, an increase in their maximal extent of aggregation and an enhancement of granular ATP secretion. Concentrations of rapamycin in the ng range, as well as short pre-incubation times (within min), were sufficient to cause significant enhancement of agonist-induced platelet aggregation and secretion (P < 0.001) as compared with their vehicle controls.
Conclusions:
Rapamycin significantly potentiates agonist-induced platelet aggregation in a time- and dose-dependent manner. As these findings are similar to those observed with the other fungal macrolides, we hypothesize that inhibition of calcineurin may not be necessary for the increase in intracellular protein phosphorylation observed following exposure of platelets to cyclosporine or tacrolimus. Whether the rapamycin-induced enhancement of sensitivity to agonists and platelet hyperaggregability explains the thrombocytopenia observed in patients when high doses of rapamycin are administered in the clinical setting, and whether these effects are synergistic with cyclosporine, are questions which remain to be investigated.
Insights
Rapamycin enhances platelet aggregation and secretion in a dose- and time-dependent manner. This suggests calcineurin inhibition may not be required for increased platelet activation by fungal macrolides.
Area of Science:
- Immunopharmacology
- Hematology
- Cellular Biology
Background:
- Rapamycin is an immunosuppressive macrolide drug.
- Unlike cyclosporine and tacrolimus, rapamycin does not inhibit calcineurin.
- Previous studies showed cyclosporine and tacrolimus enhance platelet activation.
Purpose of the Study:
- To investigate the effect of rapamycin on human platelet activation.
- To determine if rapamycin affects platelet aggregation and secretion.
- To compare rapamycin's effects with those of other macrolides.
Main Methods:
- Washed human platelets were treated with varying concentrations of rapamycin.
- Platelet aggregation and secretion were measured after stimulation with ADP or TRAP-6.
- Experiments were repeated multiple times for statistical comparison.
Main Results:
- Rapamycin significantly enhanced ADP-induced platelet aggregation and secretion.
- Rapamycin increased platelet sensitivity to TRAP-6, including aggregation velocity and extent.
- Low rapamycin concentrations and short incubation times were sufficient for significant effects.
Conclusions:
- Rapamycin potentiates agonist-induced platelet aggregation and secretion.
- Calcineurin inhibition may not be essential for macrolide-induced platelet activation.
- Further research is needed to explore rapamycin-induced thrombocytopenia and synergy with cyclosporine.