Histopathological examination of synovial specimens can contribute to the diagnosis of chronic joint diseases. A so-called synovitis score has been introduced as a standardised grading system, based on the semi-quantitative evaluation of the three determining features of chronic synovitis: enlargement of synovial lining, density of synovial stroma and inflammatory infiltrate, giving a score between 0 and 9. The present study examines the reliability of this procedure by comparison with exact measurements using computer-assisted image analysis (CAIA).
View Article and Find Full Text PDFComprehensive expression analysis using microarrays has identified a number of differentially expressed genes in smoke-exposed bronchial epithelium and non-small cell lung cancers (NSCLCs). To evaluate the prognostic relevance of these proteins in NSCLCs, we used immunohistochemistry to investigate the expression of beta-catenin (CTNNB1), dickkopf, Xenopus, homolog of 3 (DKK3 gene), fibroblast growth factor receptor 3 (FGFR3), fragile histidine triad (FHIT), tumor protein p53 (TP53), mucin1 (MUC1), topoisomerase II alpha (TOP2A), and glutathione S-transferase-Pi (GST) in a cohort of patients (n = 125). We correlated the expression data with clinicopathologic features and clinical outcome.
View Article and Find Full Text PDFBackground: Bacterial translocation is one important cause of nosocomial infections following major abdominal surgery. Oral administration of probiotics has been proposed to diminish bacterial translocation.
Material And Methods: In total 68 rats were divided into seven groups: five of the groups received standard rat chow and were subjected to either sham-operation, 70% liver resection, colonic anastomosis, or a combination of 30 or 70% liver resection with synchronous colonic anastomosis, respectively.
The astroglia cytoskeletal element, glial fibrillary acid protein GFAP, is a generally accepted sensitive indicator for neurotoxic effects in the mature brain. We used GFAP RNA as a marker for molecular biological changes in rat brain related to chronic low level lead exposure during the developmental period. Brains in the third week of postnatal life, following a continuous prenatal and postnatal exposure to lead of low dose were investigated.
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