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Induced sputum represents a useful and non-invasive tool to isolate different cells from the airways. Complete homogenization of sputum is important for dispersion of cells and is usually achieved by use of dithiothreitol (DTT). However, it is not known if DTT will influence the viability and functionality of cells obtained by induced sputum. In the present study, induced sputum was processed by DTT or by PBS treatment. The obtained neutrophils were compared with neutrophils obtained from peripheral blood and from bronchoalveolar lavage fluid (BAL). These isolated neutrophils were treated in a similar way as the sputum neutrophils with DTT or PBS. All isolated cells were used for chemiluminescence tests and for the measurement of elastase and myeloperoxidase release after stimulation with fMLP. The results showed that the maximum chemiluminescence response was always significantly lower after DTT treatment: blood, 16.68 ±1.89 vs. 2.62 ±0.43 mV, P<0.0001; sputum, 2.96 ±0.30 vs. 1.09 ±0.01 mV, P<0.01; BAL, 25.47 ±0.88 vs. 8.22±0.20 mV, P<0.0001. Both spontaneous and fMLP-induced release of elastase and myeloperoxidase (MPO) was in most cases enhanced after DTT-treatment (P-values range from 0.24 to <0.01). We conclude that the use of DTT to homogenize sputum for dispersion of cells is harmful to cell functions and these cells are hampered for the evaluation of their normal functional characteristics.
 Colon anastomosis is therapeutically challenging because multiple, usually undetectable factors influence a spectrum of repair mechanisms. We hypothesized that low molecular weight heparins, routinely administered perioperatively, may differentially affect gene expression related to colon healing. Twenty pairs of untreated and enoxaparin-treated rats underwent left-side hemicolectomy with a primary end-to-end anastomosis. Normal colon and anastomotic bowel segments were resected on day 0 and on days 1, 3, 5, and 7 after surgery, respectively. Serial anastomosis transverse cross-sections were evaluated microscopically and by microarray (Rat Genome 230 2.0, Affymetrix). Differentially expressed probe sets were annotated with Gene Ontology. We also examined the influence of enoxaparin on fibroblast proliferation and viability in vitro. Among the 5476 probe sets, we identified differential expression at each healing time point, yielding 79 subcategories. Most indicated genes were involved in wound healing, including multicellular organismal development, locomotory behavior, immune response, cell adhesion, inflammatory response, cell-cell signaling, blood vessel development, and tissue remodeling. Although we found no intensity differences in histological features of healing between enoxaparin-treated and control rats, treatment did induce significant expression changes during early healing. Of these changes, 83 probe sets exhibited at least twofold changes and represented different functional annotations, including inflammatory response, regulation of transcription, regulation of apoptosis, and angiogenesis. Fibroblast culture confirmed an anti-viability effect of enoxaparin. Enoxaparin affects colon wound-related gene expression profiles, but further studies will resolve whether heparin treatment is a risk factor after intestinal surgery, at least in some patients.
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