Transcoronary cooling and dilution for cardioprotection during revascularisation for ST-segment elevation myocardial
Ermes Carulli1, Michael McGarvey2, Mohssen Chabok3
1Department of cardiology, Guy's and St Thomas' NHS Foundation Trust, Harefield Hospital, London, UK; Doctoral school in Translational Medicine, University of Milan, Milan, Italy.
Insights
This pilot trial tests a new cooling and dilution method to protect the heart during ST-segment elevation myocardial infarction (STEMI) treatment. The STEMI-Cool strategy aims to reduce reperfusion injury by cooling the coronary artery before and during percutaneous coronary intervention (PCI).
Area of Science:
- Cardiology
- Interventional Cardiology
- Cardiovascular Research
Background:
- ST-segment elevation myocardial infarction (STEMI) treatment with primary percutaneous coronary intervention (pPCI) is limited by reperfusion injury.
- Existing therapies have not effectively reduced reperfusion injury.
- Previous transcoronary hypothermia studies showed neutral outcomes, possibly due to delayed application after initial reperfusion.
Purpose of the Study:
- To evaluate the recruitment rate, feasibility, and safety of the STEMI-Cool trial.
- To test a novel transcoronary cooling and dilution protocol for cardioprotection during pPCI.
- To investigate a strategy for controlled reperfusion, addressing limitations of previous approaches.
Main Methods:
- A pragmatic, registry-based randomized clinical pilot trial involving 60 STEMI patients undergoing pPCI.
- Patients randomized 1:1 to standard care or continuous infusion of room temperature saline via guiding catheter.
- Intervention aims for 6-8°C intracoronary temperature reduction, initiated before guidewire crossing of the occlusion.
- Mechanistic outcomes include microvascular resistance, inflammatory biomarkers, and MRI assessment of myocardial salvage and infarct size.
Main Results:
- The abstract does not contain specific results, as it describes a pilot trial protocol.
- The study is designed to assess feasibility, safety, and recruitment rates.
- Mechanistic outcome measures will provide insights into the effects of the intervention.
Conclusions:
- The STEMI-Cool trial will assess the feasibility and safety of a simple cooling and dilution strategy for cardioprotection.
- This innovative approach aims to mitigate reperfusion injury during pPCI.
- Mechanistic outcomes will elucidate the impact of transcoronary cooling and dilution on inflammatory, microvascular, and structural changes.
Background:
ST-segment elevation myocardial infarction (STEMI) is treated with immediate primary percutaneous coronary intervention (pPCI) to restore coronary blood flow in the acutely ischaemic territory, but is associated with reperfusion injury limiting the benefit of the therapy. No treatment has proven effective in reducing reperfusion injury. Transcoronary hypothermia has been tested in clinical studies and is well tolerated, but is generally established after crossing the occlusion with a guidewire therefore after initial reperfusion, which might have contributed to the neutral outcomes. Transcatheter strategies may also offer additional benefit through haemodilution and the resultant controlled reperfusion, but this has not been fully investigated for pPCI.
Design:
STEMI-Cool is a pragmatic, registry-based randomised clinical pilot trial to test the recruitment rate, feasibility, and safety of a simple transcoronary cooling and dilution protocol. Sixty STEMI patients undergoing pPCI will be randomised 1:1 to standard of care or continuous infusion of room temperature saline through the guiding catheter to achieve intracoronary temperature reductions of 6 to 8°C, commencing before crossing the coronary occlusion with a guidewire. Mechanistic outcome measures will include microvascular resistance, biomarkers of inflammation before infusion and at 24 hour, and magnetic resonance imaging of myocardial salvage and infarct size.
Conclusions:
STEMI-Cool will investigate the recruitment rate, feasibility and safety of an innovative and simple cooling and diluting strategy for cardioprotection before and during reperfusion with pPCI, aiming to address limitations faced in other studies. Mechanistic outcome measures will allow insight into inflammatory, microvascular and structural changes induced by transcoronary cooling and dilution.
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