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Biomedical subjects

Jakob B Seidelin

Publications and source records attributed to Jakob B Seidelin.

8 recordsLinked to original sources

Continuous cytokine exposure of colonic epithelial cells induces DNA damage.

OBJECTIVE: Chronic inflammatory diseases of the intestinal tract are associated with an increased risk of colorectal cancer. As an example ulcerative colitis (UC) is associated with a production of reactive oxygen species (ROS), including nitrogen monoxide (NO), which is produced in high amounts by inducible nitrogen oxide synthase (iNOS). NO as well as other ROS are potential DNA damaging agents. The aim was to determine the effect of long-term cytokine exposure on NO formation and DNA damage in epithelial cells. METHODS: A colonic cell line (HT29) was stimulated for 1-10 weeks with interferon-gamma (IFN-gamma) or tumour necrosis factor-alpha (TNF-alpha) or both and compared with unstimulated cells or cells stimulated for 48 h. Cells were co-incubated with a selective iNOS inhibitor (N-monomethyl-L-arginine (L-NMMA)) in some experiments. Viability was assessed by the dimethylthiazol diphenyl tetrazolium bromide (MTT) test. Production of ROS was determined by the oxidation of 2',7'-dichlorodihydrofluorescein to a fluorescent 2',7'-dichlorofluorescein and measured by fluorescence reading and visualized by fluorescence microscopy. DNA stability was determined by single cell gel electrophoresis. RESULTS: Continuously stimulated colonic cells had increased ROS production, especially those stimulated with TNF-alpha or IFN-gamma/TNF-alpha (P<0.001). The ROS production could be inhibited by L-NMMA co-incubation, indicating that iNOS is responsible for the up-regulation (P<0.05). Continuously stimulated cells had increased DNA instability (P<0.002), whereas short-term stimulated cells did not. The DNA instability was inhibited by L-NMMA co-incubation (P<0.05). CONCLUSIONS: Continuous cytokine exposure induces an iNOS dependent up-regulation of ROS production and DNA instability. This mechanism could be involved in carcinogenesis in chronic inflammatory diseases of the intestinal tract.

Antineoplastic Agents↗

Simple and efficient method for isolation and cultivation of endoscopically obtained human colonocytes.

Few comparative and validated reports exist on the isolation and growth of colonoscopically obtained colonic epithelium. The aim of this study was to develop and validate a simple method for the cultivation of colonoscopically obtained colonocytes. Forty patients, who underwent routine colonoscopy and where the diagnosis of irritable bowel syndrome was later reached, were included. Seven colon biopsies were taken and incubated at varying time periods of 10-120 min and temperatures of 4-37 degrees C in a chelating buffer. The epithelium was then harvested and cultivated under three different conditions: 1) on a collagen coating, 2) embedded in a collagen gel, or 3) embedded in a gel put on a porous well insert. The effect of conditioned medium (CM), insulin, transferrin, selenium, and the oxygen content was assessed. Viability was tested by the metabolic dimethylthiazol-diphenyl-tetrazolium bromide assay, by flowcytometry, by phase contrast microscopy, and by transmission electron microscopy. Incubation at 21 degrees C for 75 min gave an optimal yield of 3 x 10(6) (2.0-3.8 x 10(6)) viable epithelial cells in intact crypts per seven biopsies. Embedding of crypts in a collagen gel put on a porous membrane was superior to the other methods applied [P < 0.003; median viability 71% (62-100%) compared with preculture values] after 24 h, which was a 160% increase in viability compared with coat-cultivated cells. CM had similar viability supporting effects to FCS. Other supplements had no effects. A simple method is presented, which makes cultivation of colonocytes obtained at endoscopy possible for up to 72 h.

Cell Culture Techniques↗

Soluble L-selectin levels predict survival in sepsis.

OBJECTIVE: To evaluate serum soluble L-selectin as a prognostic factor for survival in patients with sepsis. DESIGN: A prospective study of mortality in patients with sepsis whose serum levels of sL-selectin were measured on admission to an intensive care unit (ICU) and 4 days later. Follow-up data on mortality were obtained from the Danish Central Office of Civil Registration. SETTING: A tertiary referral university hospital ICU in Copenhagen. PATIENTS: Sixty-three patients meeting the criteria for systemic inflammatory response syndrome (SIRS) with a suspected or verified infection in one or more major organs, and 14 control subjects. MEASUREMENTS AND RESULTS: On admission to the ICU the Simplified Acute Physiology Score (SAPS) II was calculated, and relevant microbial cultures were performed. Mortality was registered at various follow-up points: 7 days after admission, at discharge from hospital, and 3 and 12 months after admission. Serum sL-selectin levels were significantly lower in the patients than in the controls. Sepsis nonsurvivors had significantly lower levels than survivors. Efficiency analysis and receiver operation characteristics showed that the ideal cutoff point for sL-selectin as a test for sepsis survival was 470 ng/ml. The accumulated mortality in patients with subnormal sL-selectin levels on admission was significantly increased. No correlation was found between clinical or paraclinical markers, including SAPS II and sL-selectin, and no relationship to the microbial diagnosis was found. CONCLUSIONS: Serum sL-selectin is a predictor of survival in patients with sepsis. Those admitted with low sL-selectin (<470 ng/ml) are characterized by a high mortality within the subsequent 12-month period.

Aged↗

Transcriptome changes during intestinal cell differentiation.

The expression of 18149 genes have been analysed during the differentiation of the human intestinal cell line Caco-2. cDNA probes from undifferentiated and differentiated Caco-2 cells were separately hybridised to EST DNAs spotted in an array on a nylon membrane. A remarkable change in the transcriptome was observed during the differentiation of the Caco-2 cells. 8762 of the 18149 genes analysed were expressed above background level in the undifferentiated Caco-2 cells, whereas only 5767 genes were expressed above background in differentiated Caco-2 cells. This pattern of expression was caused by a general down-regulation of genes in the low abundance class. Similar results were found using mouse small intestinal crypt and villus cells, suggesting that the phenomenon also occurs in the intestine in vivo. The expression data were subsequently used in a search for markers for subsets of epithelial cells by performing reverse transcriptase-polymerase chain reaction on RNA extracted from laser dissected intestinal crypt and villi. In a screen of eight transcripts one - SART3 - was identified as a marker for human colonic crypts.

Animals↗

Continuous interferon-gamma or tumor necrosis factor-alpha exposure of enterocytes attenuates cell death responses.

Short-term stimulation (i.e. <2 days) with tumor necrosis factor-alpha (TNF-alpha) or interferon-gamma (IFN-gamma) cause growth arrest and sensitize epithelial cells to CD95 (Fas/Apo-1)-mediated cell death. The effect of long-term cytokine exposure on viability, proliferation, and apoptosis response of colonic epithelial cells is unknown and addressed in this study. In the present study HT29 and DLD-1 colonic cells were stimulated with either TNF-alpha or IFN-gamma at varying concentrations for 2-9 days. Viability and proliferation was assessed. CD95-mediated cell death response was determined. IFN-gamma caused decreased viability at high concentrations (1 nM), whereas lower concentrations (10-100 pM) only caused a transient growth arrest. TNF-alpha (100 pM) did not affect cell growth. Cells stimulated for 8 days with IFN-gamma (10 pM) or TNF-alpha (100 pM) had higher proliferation rates than controls or cells stimulated for 2 days (p < 0.05). Whereas the spontaneous cell death increased slightly during continuous cytokine exposure the CD95L response decreased (P < 0.01). Colonic cells continuously exposed to IFN-gamma or TNF-alpha had cell turnover characteristics that resemble findings in patients with UC. Increased proliferation and decreased cell death response may act as a counter regulatory mechanism that limits the damaging effects of cytokines.

Apoptosis↗

Expression profiling of apoptosis-related genes in enterocytes isolated from patients with ulcerative colitis.

Apoptosis regulation has been implicated as a main cause of epithelial dysfunction in patients with ulcerative colitis. Apoptosis can be divided into distinct pathways, which depend on the expression of a large number of apoptosis-related genes. The aim was to elucidate which pathways are dominant in normal and inflamed colonic epithelial cells. An apoptosis-specific gene array expression profiling system of 96 genes was used to determine the expression profile of apoptosis-related genes. Epithelial cells isolated from three patients with active ulcerative colitis were pooled and compared to pooled epithelial cells isolated from three control subjects. Genes found to be three-fold or more overexpressed in ulcerative colitis were subsequently analysed by PCR in a larger population (10 patients with ulcerative colitis, 8 control subjects). Selected genes found not to be regulated were additionally tested by PCR in the same population. Six genes were found to be highly expressed in epithelial cells from both controls and ulcerative colitis patients. These included Bcl-2 antagonist/killer, B lymphoid tyrosine kinase, caspase 14, Harakiri, tumour necrosis factor (TNF) receptor 2, and TNF receptor-associated factor 1 (TRAF1). Three genes were found to be upregulated in ulcerative colitis (p<0.01): caspase 1 and 5, and inhibitor of apoptosis protein 2 (c-IAP2). Both receptor- and mitochondrion-dependent apoptosis pathways are well expressed in enterocytes. Mainly activation-dependent and cytoprotective genes were upregulated in ulcerative colitis.

Adolescent↗