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Interference with purinergic signalling: an explanation for the cardiovascular effect of abacavir?
Juan V Esplugues1, Carmen De Pablo, Víctor Collado-Díaz
1aDepartamento de Farmacología and CIBERehd, Facultad de Medicina, Universidad de Valencia bFISABIO-Fundación Hospital Universitario Dr Peset cFundación General Universidad de Valencia; all in Valencia, Spain.
Insights
Abacavir (ABC) promotes vascular inflammation by activating ATP-P2X7 receptors on leukocytes, increasing cell adhesion. This mechanism, also seen with didanosine, explains ABC
Area of Science:
- Pharmacology
- Immunology
- Cardiovascular Research
Background:
- Abacavir (ABC), a guanosine analogue, is linked to cardiovascular toxicity, but the mechanism remains unclear.
- Clinical data suggest vascular inflammation, specifically leukocyte-endothelial cell interactions, as a potential cause.
- Previous studies indicate ABC may interfere with the purinergic system, similar to didanosine.
Purpose of the Study:
- To investigate the role of ATP-receptors in abacavir-induced leukocyte accumulation.
- To elucidate the specific purinergic signaling pathway involved in ABC's vascular effects.
Main Methods:
- In vivo studies using intravital microscopy in wild-type and P2rx7 knockout mice.
- In vitro experiments with human endothelial cells and leukocytes in a flow chamber.
- Flow cytometry to analyze leukocyte Mac-1 expression.
Main Results:
- Abacavir reduced leukocyte rolling velocity and increased adhesion both in vivo and in vitro.
- These effects were abolished in P2rx7 knockout mice and when ATP-P2X7 receptors were blocked.
- Leukocyte Mac-1 expression and adhesion were dependent on ATP-P2X7 receptor activation.
Conclusions:
- Abacavir induces leukocyte-endothelial cell interactions via ATP-P2X7 receptors on leukocytes, interfering with purine signaling.
- This mechanism provides a potential explanation for the increased cardiovascular risk observed in patients treated with abacavir.
- Didanosine demonstrated similar effects, further implicating purinergic system interference.
Objective:
The association of abacavir (ABC), a guanosine analogue, with cardiovascular toxicity is a long-lasting matter of controversy engendered by the lack of a mechanism of action. Clinical data point to an acute mechanism of vascular inflammation. Previous studies have shown that ABC induces leukocyte-endothelial cell interactions, an indicator of vascular inflammation. These effects are reproduced by another purine analogue, didanosine, but not by pyrimidine or acyclic nucleotide analogues, hinting at an interference with the purinergic system. The aim of the present study was to assess the role of ATP-receptors in leukocyte accumulation induced by ABC.
Design And Methods:
Clinical concentrations of ABC were analysed in an animal model in vivo (intravital microscopy using male C57BL/6 wild-type or P2rx7 knockout mice), in human endothelial cells and leukocytes in vitro (flow chamber), or in leukocyte Mac-1 expression (flow cytometry).
Results:
ABC reduced leukocyte rolling velocity and increased rolling flux and adhesion both in vivo and in vitro. These effects were absent in P2rx7 knockout mice and following the specific blockade of ATP-P2X7 receptors in wild-type animals. Further pharmacological characterization in flow chamber experiments confirmed the role of ATP-P2X7 receptors and suggested that those located on leukocytes were particularly implicated. Activation of ATP-P2X7 receptors is needed for expression of leukocytic Mac-1. Similar effects were obtained with didanosine.
Conclusion:
ABC induces leukocyte-endothelial cell interactions through a mechanism involving interference with purine-signalling pathways via ATP-P2X7 receptors located mainly on leukocytes. Our data are compatible with existing clinical data revealing an increased cardiovascular risk in ABC-treated patients.
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