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Ambrosi A Salomonsson S Eliasson H Zeffer E Skog A Dzikaite V Bergman G Fernlund E Tingström J Theander E Rydberg A Skogh T Öhman A Lundström U Mellander M Winqvist O Fored M Ekbom A Alfredsson L Källberg H Olsson T Gadler F Jonzon A Kockum I Sonesson SE Wahren-Herlenius M 《Annals of the rheumatic diseases》2012,71(3):334-340
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Roubille F Lairez O Mewton N Rioufol G Ranc S Sanchez I Cung TT Elbaz M Piot C Ovize M 《Basic research in cardiology》2012,107(4):275-8
Antiplatelet agents have been extensively used in acute coronary syndromes and improve clinical outcome in STEMI patients. Previous experimental studies of the impact of antiplatelet agents on infarct size have been equivoqual. We questioned whether clopidogrel might reduce infarct size in STEMI patients, independently of any antithrombotic effect, by activating a post-conditioning-like myocardial protection. We retrospectively analyzed three recent controlled, randomized, proof of concept clinical trials aimed at determining whether PCI post-conditioning might attenuated infarct size in STEMI. We addressed whether clopidogrel (300-600?mg before angioplasty) might have influenced infarct size using a multivariable linear regression analysis with infarct size as the continuous outcome variable and age, clopidogrel and GP IIb/IIIa inhibitors, post-conditioning, area at risk, ischemia time, coronary thrombectomy and final TIMI flow, as covariates. In this population of 88 STEMI patients, ischemic post-conditioning and clopidogrel administration were the only two therapeutic independent predictors of the final infarct size as determined by cardiac enzymes release (p?=?0.005 and p?0.0001, respectively) This retrospective analysis supports the proposal that clopidogrel attenuates lethal reperfusion injury. 相似文献
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Helga Bergmeister Catharina Schreiber Christian Grasl Ingrid Walter Roberto Plasenzotti Martin Stoiber David Bernhard Heinrich Schima 《Acta biomaterialia》2013,9(4):6032-6040
Pore size and porosity control the rate and depth of cellular migration in electrospun vascular fabrics and thus have a strong impact on long-term graft success. In this study we investigated the effect of graft porosity on cell migration in vitro and in vivo. Polyurethane (PU) grafts were fabricated by electrospinning as fine-mesh, low-porosity grafts (void fraction (VF) 53%) and coarse-mesh, high-porosity grafts (VF 80%). The fabricated grafts were evaluated in vitro for endothelial cell attachment and proliferation. Prostheses were investigated in a rat model for either 7 days, 1, 3 or 6 months (n = 7 per time point) and analyzed after retrieval by biomechanical analysis and various histological techniques. Cell migration was calculated by computer-assisted morphometry. In vitro, fine-pore mesh favored early cell attachment. In vivo, coarse mesh grafts revealed significantly higher cell populations at all time points in all areas of the conduit wall. Biomechanical tests indicated sufficient compliance, tensile and suture retention strength before and after implantation. Increased porosity improves host cell ingrowth and survival in electrospun conduits. These conduits show successful natural host vessel reconstitution without limitation of biomechanical properties. 相似文献
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