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Myocardial Infarction Risk Stratification With a Single Measurement of High-Sensitivity Troponin I Impact of tissue protrusion after coronary stenting in patients with ST-segment elevation myocardial infarction Management of Myocardial Revascularization Failure: An Expert Consensus Document of the EAPCI Diagnosis and Prognosis of Coronary Artery Disease with SPECT and PET Red Cell Distribution Width in Patients with Diabetes and Myocardial Infarction: an analysis from the EXAMINE trial Cardiovascular Mortality After Type 1 and Type 2 Myocardial Infarction in Young Adults Association of the PHACTR1/EDN1 Genetic Locus With Spontaneous Coronary Artery Dissection Implications of Alternative Definitions of Peri-Procedural Myocardial Infarction After Coronary Revascularization Efficacy and Safety of Low-Dose Colchicine after Myocardial Infarction Contemporary Diagnosis and Management of Patients With Myocardial Infarction in the Absence of Obstructive Coronary Artery Disease: A Scientific Statement From the American Heart Association

Original Research2021 Mar 9.

JOURNAL:Diabetes Obes Metab. Article Link

Red Cell Distribution Width in Patients with Diabetes and Myocardial Infarction: an analysis from the EXAMINE trial

JP Ferreira, Z Lamiral, G Bakris et al. Keywords: alogliptin; outcomes; red cell distribution width; T2DM

ABSTRACT

BACKGROUND - Red blood cell distribution width (RDW) is a measure of size variability in the red blood cell population (anisocytosis). Increased RDW may arise from any condition that affects erythropoiesis or the survival of erythrocytes. RDW has been associated with poor prognosis in patients with type 2 diabetes (T2D). Whether RDW is a risk marker for adverse cardiovascular outcomes or also a marker of noncardiovascular health concerns is of clinical importance.

 

AIMS - To determine the clinical correlates of increased RDW, its potential mechanistic association with multiple circulating biomarkers, and its prognostic value, in patients with (T2D) who had a recent acute coronary syndrome.

 

METHODS - We used timeupdated Cox models applied to patients enrolled in the EXAMINE (Examination of Cardiovascular Outcomes with Alogliptin versus Standard of Care) trial.

 

RESULTS - A total of 5380 patients were included, the median age was 61 years and 32% were women. Patients with higher RDW were older, more frequently women, with longer duration of diabetes duration, and increased comorbidities. An RDW >16.1% (both baseline and timeupdated) was independently associated with the study primary composite outcome of nonfatal myocardial infarction, nonfatal stroke or cardiovascular death (timeupdated adjusted HR =1.36, 95%CI =1.161.61, p < 0.001), allcause death (timeupdated adjusted HR =2.01, 95%CI =1.602.53, p < 0.001), as well as mortality from nonCV causes (timeupdated adjusted HR =2.67, 95%CI =1.724.15, p < 0.001). RDW had a weaktomoderate correlation with hemoglobin and circulating markers that reflected inflammation, apoptosis, fibrosis and congestion. Alogliptin did not alter RDW values.

 

CONCLUSIONS - RDW is a marker of disease severity associated with a multitude of poor outcomes, including both cardiovascular and noncardiovascular death. RDW correlated modestly with inflammatory, proapoptotic, profibrotic, and congestion markers, and its levels were not affected by alogliptin during the course of the trial.

 

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