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Leukocyte Activity in Patients with ST-Segment Elevation Acute Myocardial Infarction Treated with Anakinra
Authors:Chiara Sonnino  Sanah Christopher  Claudia Oddi  Stefano Toldo  Raquel Appa Falcao  Ryan D Melchior  George H Mueller  Nayef A Abouzaki  Amit Varma  Michael L Gambill  Benjamin W Van Tassell  Charles A Dinarello  Antonio Abbate
Institution:1.Virginia Commonwealth University, VCU Pauley Heart Center and Victoria Johnson Research Laboratories, Richmond, Virginia, United States of America;2.Department of Medicine, University of Colorado, Aurora, Colorado, United States of America
Abstract:Anakinra, the recombinant form of the human interleukin (IL)-1 receptor antagonist, blunts the acute systemic inflammatory response in patients with ST-segment elevation myocardial infarction (STEMI), by determining a fall in peripheral blood leukocyte and plasma C-reactive protein levels. The aim of the present study was to determine the effects of anakinra on the activity of leukocytes measured ex vivo. Blood was collected 72 h after admission in 17 patients enrolled in the Virginia Commonwealth University - Anakirna Remodeling Trial (2) (VCU-ART2) and randomly treated with anakinra (N = 7) or placebo (N = 10). Whole blood was cultured at 37°C for 24 h to measure spontaneous production of IL-6 or stimulated with Escherichia coli lipopolysaccharide (LPS) for toll-like receptor (TLR)-4 or heat-killed Staphylococcus epidermidis (SE) for TLR-2 activation. The cultures of anakinra-treated patients produced significantly less IL-6 spontaneously (71 pg/mL 27–114]) compared with placebo-treated patients (290 pg/mL 211–617], p = 0.005). LPS- or SE-induced IL-6 production, on the other hand, was not statistically different between anakinra-versus placebo-treated patients (344 pg/mL 94–560] versus 370 pg/mL 306–991], p = 0.32 for LPS, and 484 pg/mL 77–612] versus 615 pg/mL 413–871], p = 0.31 for SE, respectively). IL-1 blockade with anakinra in STEMI patients results in reduced spontaneous leukocyte activity ex vivo without impairing the responsiveness to bacterial stimuli.
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