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Biomedical subjects

R G Wood

Publications and source records attributed to R G Wood.

14 recordsLinked to original sources

Cytokine-stimulated human mesothelial cells produce chemotactic activity for neutrophils including NAP-1/IL-8.

To test the hypothesis that mesothelial cells play a role in regulating inflammatory responses within the pleural space, we examined neutrophil chemotactic activity released by cytokine-stimulated mesothelial cells. Human mesothelial cells were isolated from patients with transudative pleural effusions and cultured. The purity of the cell population was assessed by morphologic, immunocytochemical, and biochemical characteristics. Confluent fourth passage mesothelial cell plates were exposed to varying concentrations of the recombinant human cytokines IL-1 alpha, TNF-alpha, or IFN-gamma, or Escherichia coli endotoxin (LPS). Polymorphonuclear neutrophil (PMN) chemotactic activity in the conditioned media was measured in microchemotaxis chambers. Although none of the cytokines demonstrated inherent chemotactic activity, each stimulated mesothelial cells to produce PMN chemotactic activity in a dose-dependent manner. TNF-alpha stimulated the release of the greatest quantity, whereas stimulation with IFN-gamma and IL-1 alpha resulted in the release of lesser but still significant quantities of PMN chemotactic activity. By contrast, LPS did not increase the basal level of chemotactic activity produced by the cells. The cytokine-induced chemotactic activity was proteinaceous, required de novo synthesis, and had a predominant m.w. of 10,000. Significant quantities of immunoreactive neutrophil-activating peptide-1 (NAP-1)/IL-8 were detected in mesothelial cell supernatants after stimulation with each of the cytokines. The neutrophil chemotactic activity of supernatants from mesothelial cells stimulated with either IL-1 alpha or IFN-gamma was completely neutralized with rabbit anti-human NAP-1/IL-8 polyclonal antiserum. The same antiserum neutralized the majority, but not all, of the neutrophil chemotactic activity in supernatants from TNF-stimulated mesothelial cells. Stimulated mesothelial cells also expressed an inducible mRNA transcript that hybridized with a specific oligonucleotide probe for human NAP-1/IL-8. These observations provide a mechanism whereby mesothelial cells could respond to inflammatory stimuli in the underlying lung and regulate inflammatory responses within the pleural space.

Base Sequence↗

Azithromycin versus cefaclor in the treatment of acute bacterial pneumonia.

In this randomised, double-blind study carried out in 28 centres, azithromycin (500 mg single dose on day 1, followed by 250 mg once-daily on days 2-5) was compared with cefaclor (500 mg t.i.d. for 10 days) in the treatment of acute bacterial pneumonia. A total of 119 patients entered the study, and of these 71 were evaluable and included in the efficacy analysis. The overall satisfactory clinical response was 97.3% for azithromycin patients and 100% for cefaclor patients. The clinical cure rates of azithromycin and cefaclor were 46.9% and 41.0%, respectively; improvement was seen in an additional 46.9% of azithromycin-treated patients and in 59.0% of the cefaclor group. The bacteriological eradication rates were 80.4% and 92.6%, respectively. These rates of clinical and bacteriological efficacy, were not statistically different. Both antibiotics were well tolerated during the study; only two patients (one on each study drug) discontinued medication due to adverse events. The overall incidence of side effects was 18.9% (10 of 53 patients) for azithromycin- and 12.1% (eight of 66 patients) for cefaclor-treated patients. Gastrointestinal disturbances were the most commonly reported side effects (nine of 10 azithromycin-treated patients and six of eight cefaclor-treated patients). In addition, two cefaclor patients reported headache. All azithromycin side effects were mild or moderate in severity, but there were two severe occurrences in the cefaclor group (1 nausea, 1 vomiting) the later leading to discontinuation.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗