Key result
Lower serum EPO is linked to angiographic and ECG no-reflow after primary PCI for STEMI.
Why the study?
Are lower endogenous serum erythropoietin levels associated with an increased risk of no-reflow in patients with STEMI undergoing primary PCI?
Case-Control (n=48)
Are lower endogenous serum erythropoietin levels associated with an increased risk of no-reflow in patients with STEMI undergoing primary PCI?
p-value: p=0.017
Lower endogenous erythropoietin levels are independently associated with an increased risk of angiographic and ECG no-reflow following primary PCI for STEMI.
May aid no-reflow risk stratification after STEMI PCI; hypothesis-generating and should not yet change practice.
BACKGROUND: In models of acute ischaemia, erythropoietin (EPO) administration has been found to attenuate vascular injury largely through reduced apoptosis, suppressed inflammation and increased nitric oxide availability. We studied the association between circulating endogenous EPO and no-reflow in patients with first ST-elevation myocardial infarction (STEMI) undergoing primary percutaneous coronary intervention (PPCI). METHODS: Blood sampling was performed before PPCI. Consecutive patients with (n = 24) or without (n = 24) evidence of angiographic no-reflow after PPCI were enrolled. Angiographic no-reflow was defined as Thrombolysis in Myocardial Infarction (TIMI) flow ≤ 2 or as TIMI flow = 3 but with myocardial blush grade < 2. We also assessed electrocardiographic (ECG) no-reflow as ≤ 50% resolution of maximal ST elevation 60 min after PPCI. RESULTS: Baseline characteristics did not correlate significantly with EPO concentrations. In contrast, both angiographic and ECG no-reflow correlated with lower EPO levels at univariate analysis [median (interquartile): 4·2 (0·6-9·5) vs. 12·2 (5·2-20·3) mIU mL(-1), P = 0·001, and 4·0 (0·6-7·1) vs. 9·3 (1·0-12·6) mIU mL(-1), P = 0·01, respectively]. At multivariable analysis, decreasing EPO tertiles and left anterior descending as the infarct-related artery were the only factors that predicted both angiographic and ECG no-reflow (P = 0·017 and P = 0·02 for EPO; P < 0·005 and P > 0·05 for left anterior descending artery, respectively). CONCLUSIONS: We found an independent, graded, inverse relation between endogenous EPO levels and angiographic and ECG no-reflow following PPCI. In animal models of ischaemia, EPO has been found to be protective. In humans, endogenous EPO may contribute to offset the mechanisms responsible for no-reflow.
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Niccoli et al. (2011) conducted a case-control in first ST-elevation myocardial infarction (STEMI) undergoing primary percutaneous coronary intervention (PPCI) (n=48). Endogenous serum erythropoietin vs. Higher endogenous serum erythropoietin levels was evaluated on Angiographic and ECG no-reflow (p=0.017). Lower endogenous serum erythropoietin levels were independently associated with both angiographic and ECG no-reflow following primary PCI for STEMI (P=0.017 and P=0.02, respectively).
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