Vascular injury aimed at stenosis removal induces local reactions often leading to restenosis. The aim of this study was a concerted transcriptomic-proteomics analysis of molecular variations in a model of rat carotid arteriotomy, to dissect the molecular pathways triggered by vascular surgical injury and to identify new potential anti-restenosis targets. RNA and proteins extracted from inbred Wistar Kyoro (WKY) rat carotids harvested 4 hrs, 48 hrs and 7 days after arteriotomy were analysed by Affymetrix rat microarrays and by bidi-mensional electrophoresis followed by liquid chromatography and tandem mass spectrometry, using as reference the RNA and the proteins extracted from uninjured rat carotids. Results were classified according to their biological function, and the most significant Kyoro Encyclopedia of Genes and Genomes (KEGG) pathways were identified. A total of 1163 mRNAs were differentially regulated in arteriotomy-injured carotids 4 hrs, 48 hrs and 7 days after injury (P < 0.0001, fold-change ≥2), while 48 spots exhibited significant changes after carotid arteriotomy (P < 0.05, fold-change ≥2). Among them, 16 spots were successfully identified and resulted to correspond to a set of 19 proteins. mRNAs were mainly involved in signal transduction, oxidative stress/inflammation and remodelling, including many new potential targets for limitation of surgically induced (re)stenosis (e.g. Arginase I, Kruppel like factors). Proteome analysis confirmed and extended the microrarray data, revealing time-dependent post-translational modifications of Hsp27, haptoglobin and contrapsin-like protease inhibitor 6, and the differential expression of proteins mainly involved in contractility. Transcriptomic and proteomic methods revealed functional categories with different preferences, related to the experimental sensitivity and to mechanisms of regulation. The comparative analysis revealed correlation between transcriptional and translational expression for 47% of identified proteins. Exceptions from this correlation confirm the complementarities of these approaches.
This study aimed to evaluate our 30-year experience in the treatment of deep sternal wound infection after cardiac surgery. Between 1979 and 2009, deep sternal wound infections occurred in 200 of 22,366 (0.89%) patients who underwent sternotomy. The study population was divided into 3 groups. In group A (62 patients; 1979-1994), an initial attempt at conservative antibiotic therapy was the rule, followed by surgery in case of failure. In group B (83 patients; 1995-2002), the treatment was in 3 steps: wound debridement and closed irrigation for 10 days; in case of failure, open dressing with sugar and hyperbaric treatment; delayed healing and negative wound cultures mandated plastic reconstruction. In group C (2002-2009), the treatment was based on early surgical debridement, vacuum application, and reconstruction using pectoralis muscle flap. Hospital mortality in group A was significantly higher than that in groups B and C. Hospital stay, time for normalization of white blood cell count and C reactive protein, and time for defervescence were significantly shorter in group C. In our experience, early surgical debridement and vacuum application followed by plastic reconstruction provided a satisfactory rate of healing and a good survival rate.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.