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Published on: May 28, 2019
Ticagrelor Conditioning Effects Are Not Additive to Cardioprotection Induced by Direct NLRP3 Inflammasome Inhibition:
Claudia Penna1, Manuela Aragno1, Alessia Sofia Cento1
1Department of Clinical and Biological Sciences, University of Turin, Turin, Italy.
Insights
Ticagrelor, a P2Y12 receptor antagonist, and NLRP3 inflammasome inhibition both protect the heart. However, their protective effects are not additive, suggesting Ticagrelor
Area of Science:
- Cardiovascular Research
- Inflammation Biology
- Pharmacology
Background:
- P2Y12 receptor inhibition and NLRP3 inflammasome inhibition offer cardioprotection.
- Ticagrelor is a P2Y12 receptor antagonist.
- The NLRP3 inflammasome plays a role in myocardial injury.
Purpose of the Study:
- To investigate if direct NLRP3 inflammasome inhibition provides additive cardioprotective effects to Ticagrelor.
- To determine the mechanism of Ticagrelor-induced cardioprotection.
Main Methods:
- Rats were treated with Ticagrelor orally for three days.
- Isolated rat hearts underwent ischemia/reperfusion (IR) injury.
- Hearts were treated ex vivo with an NLRP3 inhibitor (INF) or Ticagrelor.
- Infarct size, NLRP3 inflammasome activation, RISK pathway, and redox defense were assessed.
Main Results:
- Ticagrelor pretreatment significantly reduced infarct size.
- Direct NLRP3 inhibition with INF also significantly reduced infarct size.
- Both treatments attenuated IR-induced NLRP3 inflammasome complex formation.
- Ticagrelor's cardioprotective effects were linked to RISK pathway activation and redox defense, but were not additive to NLRP3 inhibition.
- Ticagrelor administered ex vivo to isolated hearts showed no protective effect, indicating its target is not in the myocardium.
Conclusions:
- Ticagrelor's cardioprotective effects are mediated indirectly, likely via platelets.
- Direct NLRP3 inflammasome inhibition provides significant cardioprotection.
- The cardioprotective effects of Ticagrelor and direct NLRP3 inhibition are not additive.
Abstract:
Inhibition of either P2Y12 receptor or the nucleotide-binding oligomerization domain- (NOD-) like receptor pyrin domain containing 3 (NLRP3) inflammasome provides cardioprotective effects. Here, we investigate whether direct NLRP3 inflammasome inhibition exerts additive effects on myocardial protection induced by the P2Y12 receptor antagonist Ticagrelor. Ticagrelor (150 mg/kg) was orally administered to rats for three consecutive days. Then, isolated hearts underwent an ischemia/reperfusion (30 min ischemia/60 min reperfusion; IR) protocol. The selective NLRP3 inflammasome inhibitor INF (50 μM) was infused before the IR protocol to the hearts from untreated animals or pretreated with Ticagrelor. In parallel experiments, the hearts isolated from untreated animals were perfused with Ticagrelor (3.70 μM) before ischemia and subjected to IR. The hearts of animals pretreated with Ticagrelor showed a significantly reduced infarct size (IS, 49 ± 3% of area at risk, AAR) when compared to control IR group (69 ± 2% of AAR). Similarly, ex vivo administration of INF before the IR injury resulted in significant IS reduction (38 ± 3% of AAR). Myocardial IR induced the NLRP3 inflammasome complex formation, which was attenuated by either INF pretreatment ex vivo, or by repeated oral treatment with Ticagrelor. The beneficial effects induced by either treatment were associated with the protective Reperfusion Injury Salvage Kinase (RISK) pathway activation and redox defence upregulation. In contrast, no protective effects nor NLRP3/RISK modulation were recorded when Ticagrelor was administered before ischemia in isolated heart, indicating that Ticagrelor direct target is not in the myocardium. Our results confirm that Ticagrelor conditioning effects are likely mediated through platelets, but are not additives to the ones achieved by directly inhibiting NLRP3.
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