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von Willebrand Factor and Management of Heart Valve Disease: JACC Review Topic of the Week Glycemic Index, Glycemic Load, and Cardiovascular Disease and Mortality Temporal Trends, Characteristics, and Outcomes of Infective Endocarditis After Transcatheter Aortic Valve Replacement Impact of Percutaneous Revascularization on Exercise Hemodynamics in Patients With Stable Coronary Disease Higher neutrophil-to-lymphocyte ratio (NLR) increases the risk of suboptimal platelet inhibition and major cardiovascular ischemic events among ACS patients receiving dual antiplatelet therapy with ticagrelor 6-month versus 12-month or longer dual antiplatelet therapy after percutaneous coronary intervention in patients with acute coronary syndrome (SMART-DATE): a randomised, open-label, non-inferiority trial Dual Antiplatelet TherapyIs It Time to Cut the Cord With Aspirin? Ambulatory Electrocardiogram Monitoring in Patients Undergoing Transcatheter Aortic Valve Replacement: JACC State-of-the-Art Review Patterns of calcification in coronary artery disease. A statistical analysis of intravascular ultrasound and coronary angiography in 1155 lesions Infective Endocarditis After Transcatheter Aortic Valve Replacement

Original Research2016 Jul 1;102(13):1023-8.

JOURNAL:Heart. Article Link

Remote ischaemic conditioning and healthcare system delay in patients with ST-segment elevation myocardial infarction

Pryds K, Terkelsen CJ, CONDI Investigators. Keywords: STEMI; remote ischaemic conditioning; healthcare system delay

ABSTRACT


OBJECTIVE - We investigated influence of remote ischaemic conditioning (RIC) on the detrimental effect of healthcare system delay on myocardial salvage in patients with ST-segment elevation myocardial infarction (STEMI) undergoing primary percutaneous coronary intervention (pPCI).


METHODS - A post-hoc analysis of a randomised controlled trial in patients with STEMI randomised to treatment with pPCI or RIC+pPCI. RIC was performed as four cycles of intermittent 5 min upper arm ischaemia and reperfusion. Healthcare system delay was defined as time from emergency medical service call to pPCI-wire. Myocardial salvage index (MSI) was assessed by single photon emission computerised tomography.


RESULTS - Data for healthcare system delay and MSI were available for 129 patients. MSI was negatively associated with healthcare system delay in patients treated with pPCI alone (-0.003 decrease in MSI/min of healthcare system delay; 95% CI -0.005 to -0.001, r(2)=0.11, p=0.008) but not in patients treated with RIC+pPCI (-0.0002 decrease in MSI/min of healthcare system delay; 95% CI -0.001 to 0.001, r(2)=0.002, p=0.74). In patients with healthcare system delay ≤120 min, RIC+pPCI did not affect median MSI compared with pPCI alone (0.75 (IQR: 0.49-0.99) and 0.70 (0.45-0.94), p=1.00). However, in patients with healthcare system delay >120 min, RIC+pPCI increased median MSI compared with pPCI alone (0.74 (0.52-0.93) vs 0.42 (0.22-0.68), p=0.02). Adjusting for potential confounders did not affect the results.


CONCLUSIONS - RIC as adjunctive to pPCI attenuated the detrimental effect of healthcare system delay on myocardial salvage in patients with STEMI, suggesting that the cardioprotective effect of RIC increases with the duration of ischaemia.



TRIAL REGISTRATION NUMBER - NCT00435266; post-results.