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D Kelleher

Publications and source records attributed to D Kelleher.

At least 73 records · Page 4Linked to original sources

Elevated levels of circulating soluble adhesion molecules in peripheral blood of patients with unstable angina.

We have demonstrated increased levels of the circulating soluble adhesion molecules (sCAMs), ICAM-1, VCAM-1, and E-selectin in patients with unstable angina compared with healthy controls. Our findings support the role of inflammation in clinically unstable coronary disease, and may indicate a potential role for measurement of peripheral sICAM levels as a marker for inflammatory activity in atherosclerotic plaque.

Adult↗

Elevated levels of circulating soluble adhesion molecules in patients with nonrheumatic aortic stenosis.

Increased serum levels of soluble adhesion molecules are found in various disorders of inflammatory or immunologic etiology. We found elevated levels of the soluble adhesion molecules ICAM-1, VCAM-1, and E-selectin in patients with nonrheumatic aortic stenosis, suggesting that inflammation may be important in the pathogenesis of this condition, which is generally believed to be degenerative.

Aortic Valve Stenosis↗

TNF-mediated cytotoxicity of L929 cells: role of staurosporine in enhancement of cytotoxicity and translocation of protein kinase C isozymes.

The role of protein kinase C (PKC) in tumour necrosis factor (TNF)-mediated cytotoxicity was investigated, using the L929 cell line. The PKC activator phorbol-12-myristate 13-acetate (PMA) increased proliferation and inhibited TNF-induced cytotoxicity of L929 cells. A range of specific PKC inhibitors had no effect on TNF-mediated killing, suggesting that PKC does not play a direct role in this response. However, staurosporine enhanced cytotoxicity by TNF in the presence of actinomycin D, a protein synthesis inhibitor. In view of this finding, the authors investigated the role of specific PKC isozymes in both TNF-mediated cytotoxicity and staurosporine-induced sensitization to killing. PKC-alpha, beta, epsilon and zeta were detected in L929 cells. PKC-beta was only weakly detected in the cytoplasm, PKC alpha, epsilon and zeta were all found in resting cytoplasm and membrane. Stimulation with PMA caused a strong translocation of PKC-alpha but not zeta to the membrane. TNF had no effect on these isozymes but interestingly caused a translocation of PKC-epsilon, which also occurred in response to PMA. Staurosporine caused a translocation of PKC-zeta to the plasma membrane and a loss of PKC-epsilon from the cytosol. Although TNF induced PKC-epsilon translocation, this is unlikely to be involved in cytotoxicity as this effect was also induced by PMA which protected against TNF-mediated cytotoxicity. Staurosporine also induced translocation of PKC-zeta, an isozyme whose activity was previously found to be resistant to inhibition by staurosporine. These findings suggest the possibility that the mechanism by which staurosporine potentiates TNF action does not involve inhibition of PKC, but in contrast may involve modulation of PKC-zeta.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Effect of a bicycle safety program and free bicycle helmet distribution on the use of bicycle helmets by elementary school children.

OBJECTIVE: Each year in the United States, 300,000 children are treated in emergency departments for bicycle injuries; one third have head injuries. The purpose of this study was to determine the effectiveness of educational interventions and free helmet distribution in increasing the use of helmets by elementary school children. METHODS: Self-report questionnaires on the use of bicycle helmets were used for students at two elementary schools (n = 1610). Testing was done both before and after the administration of a bicycle safety program and the distribution of free helmets. Pretest and posttest answers were then compared for changes in helmet use. RESULTS: Helmet usage increased significantly after the bicycle safety program, from 38% to 46% overall (p < 0.005). Children who were given free helmets were significantly more likely to wear their helmets (61.4%) than children who already owned helmets (43.4%) (p > 0.016). Children who attended the school in which free helmets were distributed showed a significant increase in helmet use (p < 0.01), whereas those at the school that had a safety program alone did not show a significant increase (p > 0.17). DISCUSSION: The results of this study suggest that bicycle safety programs and free helmet distribution may increase the consistent use of helmets in elementary school children.

Bicycling↗

Human small intestinal epithelial cells secrete interleukin-7 and differentially express two different interleukin-7 mRNA Transcripts: implications for extrathymic T-cell differentiation.

The small intestinal epithelium, composed of epithelial cells (EC) and intraepithelial T lymphocytes, is exposed to numerous ingested antigens. Small intestinal EC may act as accessory and/or antigen presenting cells for intestinal T cells, some of which may mature extrathymically and regulate local immunity and tolerance. Since interleukin-7 (IL-7) plays an essential role in T cell maturation and activation, we examined its expression by human small intestinal EC. IL-7 was detected by ELISA in supernatants from 4 of 4 epithelial layer (EpL) cultures. Using RT-PCR, IL-7 mRNA was detected in 4 EpL studied, and two distinct IL-7 transcripts were identified in 3 of the 4. The ratios of the intensities of the larger to the smaller bands varied amongst individuals. Furthermore, the intensity ratios were higher in whole-thickness intestine and lamina propria preparations than in their corresponding EpL. This is the first report of the expression of two IL-7 transcripts in human intestine and of IL-7 secretion by human small intestinal EpL cells. This supports the hypothesis that small intestinal EC may influence differentiation and/or activation of neighboring T cells. The differential expression of the two transcripts may have important implications for immune regulation in the intestinal epithelium.

Biopsy↗

Protein kinase C isotypes theta, delta and eta in human lymphocytes: differential responses to signalling through the T-cell receptor and phorbol esters.

The repertoire of novel and atypical protein kinase C (PKC) isotypes present in human T cells and their subcellular localization have not been fully characterized. We detected calcium-independent PKC activity in whole cell fractions from unstimulated peripheral blood lymphocytes (PBL). Towards an understanding of the role of PKC isoforms in lymphocyte activation we have studied the expression of calcium-independent PKC isoforms theta, delta and eta in PBL. With isoformspecific antibodies we detected the presence of PKC theta and delta in whole cell fractions from unstimulated human PBL by Western blot analysis. In addition, immunocytochemical analysis confirmed the presence of the novel PKC isoform PKC eta in PBL. Using immunocytochemistry, PKC theta, delta and eta had distinct patterns of redistribution following activation by phorbol myristate acetate (PMA). However, signalling through the T-cell receptor (TCR) did not appear to induce such changes in isoenzyme redistribution. These findings indicate that activation of lymphocytes either through the TCR-CD3 complex or with PMA induces different signalling pathways with respect to calcium-independent isoenzymes. Signalling through receptors other than the CD3 complex may be involved in activation of these isotypes.

Blotting, Western↗

Subcellular localization and translocation of protein kinase C isoforms zeta and epsilon in human peripheral blood lymphocytes.

The calcium-independent members of the protein kinase C (PKC) family may play a significant role in T cell function. We have characterized the subcellular localization and redistribution of calcium-independent kinase C activity and of two specific members of this family (zeta and epsilon) in response to activation of human peripheral blood lymphocytes with phorbol myristate acetate (PMA) or through the TCR-CD3 complex. Both PMA and OKT3, an antibody against the TCR-associated CD3 complex, induce an increase in membrane and cytoskeletal activity with a concomitant decrease in cytosolic activity. By Western blot analysis, PKC epsilon is present in resting cytosol and membrane fractions, and is detected in the membrane following activation with PMA and in both the membrane and cytoskeleton following OKT3 activation. By contrast, PKC zeta is progressively lost from the cytoskeleton following activation with anti-CD3. Immunocytochemistry reveals distinct redistribution patterns for these enzymes in response to activation through anti-CD3 and by PMA. These findings demonstrate that signaling through the CD3 complex induces significant changes in calcium-independent PKC activity and in the intracellular distribution of specific isoenzymes, and support a role for specific functions for individual isoenzymes in T cell activation. Lastly, changes in the cytoskeletal distribution of these isoenzymes suggest a potential role in the modulation of cell structure in response to activation.

Biological Transport, Active↗

Identification and characterization of a metalloprotease activity from Helicobacter pylori.

Helicobacter pylori produces a metalloprotease with a native molecular size of approximately 200 kDa, as determined by size-exclusion chromatography. Subcellular distribution studies demonstrated that the activity was associated with the outer membrane fraction of the bacterium. In addition, the protease was secreted by the bacterium when grown in liquid culture. The enzyme activity was measured by hydrolysis of azocasein and biotinylated casein and exhibited optimal caseinolytic activity at pH 8.0 (37 degrees C). The activity was inhibited by EDTA, 1,10-phenanthroline, phosphoramidon, pyridine-2,6-dicarboxylic acid, and 8-hydroxyquinoline-5-sulfonic acid (HQSA). Inhibition by HQSA was reversed by zinc, whereas inhibition due to EDTA was reversed by excess calcium, thus indicating that the enzyme was a zinc-dependent, calcium-stabilized endoproteinase. Furthermore, titration with Zn2+ of a desalted, active-site zinc-chelated preparation of the protease demonstrated that Zn2+ was essential for activity. Leupeptin, phenylmethylsulfonyl fluoride, E-64, pepstatin A, dithiothreitol, and 2-mercaptoethanol had no effect on enzymatic activity. Addition of Ca2+ or Mg2+ to the incubation medium resulted in approximately a twofold stimulation of the azocaseinolytic activity of the enzyme. The protease was stably expressed since it was active even after repeated subculture of the bacterium. Bovine serum albumin, hide powder azure, and elastin-Congo red remained intact even after prolonged exposure to the enzyme. The surface expression of this metalloprotease activity raises the possibility that this enzyme may be involved in the proteolysis of a variety of host proteins in vivo and thereby contributes to gastric pathology.

Edetic Acid↗

Changes in barrier function of a model intestinal epithelium by intraepithelial lymphocytes require new protein synthesis by epithelial cells.

BACKGROUND: Elements of the mucosal immune system may play an important part in regulating epithelial barrier function in the intestinal tract. Intraepithelial lymphocytes (IELs) represent a subtype of immunocyte which is strategically placed to regulate epithelial function at most mucosal sites. AIMS AND METHODS: An IEL derived cell line (SC1) was used to examine its effects on the model epithelium T84--a tumour derived cell line which retains the phenotype of colonic crypt cells. Transepithelial electrical resistance (TER) was used as a marker of epithelial integrity. RESULTS: Coculture of T84 cells with SC1 produced a significant fall in TER as did exposure of T84 monolayers to IEL derived supernatant. Recombinant interferon-gamma (rIFN gamma) also reduced TER in T84 monolayers. Cycloheximide prevented the effects of IEL supernatant and of rIFN gamma on TER. The fall in TER in response to rIFN gamma was attenuated by blocking antibodies, which did not alter the fall in resistance induced by IEL supernatant. Fractions of IEL supernatant, separated on the basis of size, evoked temporally distinct changes in TER. Ultrastructural studies support the hypothesis that the slow onset but severe fall in TER indicates catastrophic effects on the monolayer. The more rapid onset fall in TER was not associated with gross changes in monolayer morphology. Reduction of TER by IEL supernatant was not influenced by inhibitors of tyrosine phosphatase or of protein kinase C. Although herbimycin did reduce the rapid onset change in TER, the tyrosine kinase inhibitor genistein did not alter responses to IEL supernatant. CONCLUSIONS: Mucosal T cells may influence barrier function by a process involving new protein synthesis by epithelial cells. This model may have relevance in some inflammatory conditions of the gastrointestinal tract.

Benzoquinones↗

pim-1 proto-oncogene expression in anti-CD3-mediated T cell activation is associated with protein kinase C activation and is independent of Raf-1.

We have studied pim-1 proto-oncogene expression in human T cell responses to Ag receptor-generated signals. The pim-1 gene encodes a serine/threonine protein kinase that is expressed primarily in cells of hematopoietic lineage and is implicated in the intracellular signaling processes accompanying lymphocyte activation. We show here that pim-1 mRNA expression is rapidly induced after receptor cross-linking with anti-CD3 Abs. We examined the linkage of pim-1 expression to known signaling pathways generated through the T cell Ag receptor. pim-1 mRNA was not substantially induced after elevation of intracellular free Ca2+. In contrast, PMA, which directly activates PKC, induced rapid pim-1 expression. Further, anti-CD3- or PMA-induced pim-1 expression was markedly reduced by various PKC inhibitors and by deficiency of the PKC epsilon isoform in a mutant T cell line. Thus, T cell Ag receptor-linked pim-1 expression appears to be coupled to the PKC component of transmembrane signaling. Because the activation of protein kinase C has been shown to activate Raf-1 kinase activity, the involvement of Raf-1 in pim-1 expression was also investigated using a human T cell line stably transfected with an inducible Raf expression vector. Although the overexpression of activated Raf was shown to cause a substantial increase in IL-2 expression, no discernible effects on pim-1 were apparent. In addition, we examined transcriptional and post-transcriptional mechanisms involved in PKC-mediated pim-1 expression and observed that both transcriptional and post-transcriptional mechanisms are coordinately involved in the up-regulation of the pim-1 proto-oncogene.

Calcium↗

TNF2, a polymorphism of the tumour necrosis-alpha gene promoter, is a component of the celiac disease major histocompatibility complex haplotype.

Celiac disease (CD) is an immune disease triggered by the cereal antigen gliadin, resulting in villous atrophy in the small intestine. Susceptibility to the development of CD is strongly influenced by genes in the major histocompatibility complex, in particular alleles of the DQ genes in the class II region. However recent evidence has suggested that the major histocompatibility complex (MHC) class III region may be linked to celiac disease independently of the class II region. Among the genes located in this area is TNF-alpha, which encodes the cytokine tumor necrosis factor-alpha which has a broad range of pro-inflammatory, immunomodulatory and catabolic activities. Therefore, aberrant expression of TNF-alpha could be important in the pathogenesis of MHC-associated immune disorders. A TNF-alpha variant with a polymorphism in its promoter region has been described and designated TNF2. TNF2 has been associated with a variety of MHC-linked diseases, including systemic lupus erythematosus, dermatitis herpetiformis and insulin-dependent diabetes mellitus (IDDM), as well as parasitic infections. TNF2 has previously been shown to be associated with the MHC haplotype HLA A1-B8-DR3-DQ2, which confers susceptibility to CD. We have analyzed the distribution of TNF2 alleles in a group of celiac patients (n = 52) compared to controls (n = 52) in an effort to evaluate its role, if any, in susceptibility to the condition. TNF2 has a frequency of 0.5000 (SE +/- 0.0490) in CD, compared to 0.1635 (+/- 0.0362) in a control sample (p < 10(-6)). Of 52 patients, 44 carried one or more TNF2 alleles. Analysis indicates that the distribution of TNF2 is best explained by assuming 100% allelic association between it and HLA-DQB1*0201 (frequency = 0.7791 +/- 0.0447). However, the number of TNF2 heterozygotes significantly exceeds expectations and measurements of linkage disequilibrium confirm that allelic associations spanning the DQ and TNF regions are strongly maintained in CD. Taken together, these results indicate that TNF2 may have a role in the pathogenesis of CD; however, since it is not an independent association, the possibility that TNF2 constitutes a passive component of the CD haplotype cannot be excluded.

Alleles↗

Association of celiac disease with microsatellite polymorphisms close to the tumor necrosis factor genes.

Celiac disease is tightly linked to the MHC class II region on chromosome 6. We have studied two highly polymorphic microsatellite loci, TNFa and b, near the TNF genes in the class III region of the MHC, for evidence of their association to CD, as compared to a control population. Our findings show that the microsatellite allele most significantly associated with the disease is TNFb3, which is found in 86.3% of CD patients versus 24.5% of controls, with allele frequencies of 0.5392 and 0.1290, respectively (p < 0.001). The TNFa2 allele had a frequency of 0.6122 in CD patients and 0.2627 in controls (p < 0.001), with phenotype frequencies of 87.8% and 50.0%, respectively. TNFa6 and -a11 and TNFb5 have significantly reduced frequencies in CD patients. TNFb3 shows a maximal level of linkage disequilibrium with HLA-DQB1*0201 in celiac patients. However, while the DQB1*0201/TNFa2 haplotype was strongly associated with CD, DQB1*0201 was not significantly in linkage disequilibrium with TNFa2, suggesting that TNFa2 is independently associated with CD. This association could have functional significance as TNFa2 has been correlated with high TNF production.

Celiac Disease↗

Decreased intestinal CYP3A in celiac disease: reversal after successful gluten-free diet: a potential source of interindividual variability in first-pass drug metabolism.

BACKGROUND: Cytochrome P450 (CYP) 3A is constitutively expressed in human intestinal villi and may account for significant "first-pass" prehepatic metabolism of a number of drugs in the intestine. Celiac disease results in small intestinal atrophy. We hypothesized that this would result in a loss of CYP3A. METHODS: Formalin-fixed jejunal biopsy specimens taken from nine patients with celiac disease at variable times before and after treatment with a gluten-free diet were immunoperoxidase stained after incubation with anti-CYP3A4 rabbit antisera (1:2000 dilution). The amount of immunoreactive CYP3A was determined by two observers who were blinded to the treatment states of the patients. Staining intensity was graded on a numerical scale from 1 to 4+ on the basis of intensity of staining in individual enterocytes, as well as the total number of enterocytes stained. RESULTS: Slides of biopsy specimens from all nine untreated patients with celiac disease were graded 1. Treatment with a gluten-free diet was associated with a significant increase in CYP3A immunoreactive protein in small bowel biopsy specimens (p < 0.05, Wilcoxon signed-rank test). CONCLUSIONS: We conclude that patients with celiac disease have low intestinal CYP3A immunoreactivity and that treatment with a gluten-free diet is associated with an increase in intestinal CYP3A immunoreactive protein. Our findings suggest that intestinal disease and variability in intestinal CYP3A activity might be an unexamined variable that may contribute to interindividual variability in drug disposition.

Adult↗

Helicobacter pylori increases proliferation of gastric epithelial cells.

The direct and indirect effects of helicobacter pylori on cell kinetics of gastric epithelial cell line AGS were investigated by flow cytometric analysis of Ki-67 positive cells and by MTT assay. Flow cytometric analysis of Ki-67 positivity permits detection of cells that are in S-phase, whereas the MTT assay is a colometric measure of the number of viable cells. In the absence of added stimulants, 23.06 (4.88)% mean (SD) of AGS cells were Ki-67 positive. When cells were preincubated in the presence of H pylori, there was a significant increase in Ki-67 positivity (66.20 (7.89)%, p < 0.001). This increase was not seen in cells cultured in the presence of Campylobacter jejuni (24.63 (8.11)% or Escherichia coli (21.66 (9.78)%). Pre-incubation of AGS cells with supernatants from both H pylori and mitogen activated peripheral blood lymphocytes also increased the per cent of cells that were Ki-67 positive (72.93 (8.68) and 69.96 (12.35)%; p, 0.001) respectively. Similar results were also found in MTT assay. These data show that both H pylori directly and the immune/inflammatory response to H pylori indirectly can influence the rate of epithelial cell proliferation, suggesting this bacterium may be an initiating step in gastric carcinogenesis and an important co-carcinogenic factor in H pylori positive subjects.

Antibodies, Monoclonal↗

Microalbuminuria correlates with intestinal histopathological grading in patients with inflammatory bowel disease.

It has previously been shown that microalbuminuria is a useful disease activity marker for inflammatory bowel disease (IBD). Microalbuminuria correlates strongly with the markers of clinical and laboratory disease activity such as erythrocyte sedimentation rate (ESR), and C reactive protein (CRP). The aim of this study was to discover if microalbuminuria accurately reflects the intestinal inflammation by correlating it with intestinal inflammation using a standard histopathological grading system in patients with ulcerative colitis and Crohn's colitis. Forty two patients with IBD who had undergone endoscopic examination of the entire colon for the assessment of severity and extent of the disease (Crohn's colitis (n = 21), ulcerative colitis (n = 21)) were recruited to the study. Patients with small bowel Crohn's disease were not studied. Twenty four patients had left sided colonic disease and 18 patients had extensive colonic disease. Each patient's colonic biopsy specimens were scored blindly by a histopathologist and a composite score was compiled on the basis of the severity of changes in the enterocytes and crypts and the cellularity of the lamina propria. A clinical disease activity was obtained using the simple index of Harvey and Bradshaw. Microalbuminuria was measured in all patients by an immunoturbiditimetric method. ESR and CRP were also measured, as indicators of acute phase response in the same patients. It was found that patients with active IBD had higher concentrations of microalbuminuria compared with those patients in remission (median 222 micrograms/min (range 40-686 micrograms/min) v median 96 micrograms/min (range 30-376 micrograms/min); p < 0.001)). Significantly higher concentrations of microalbuminuria were also detected in patients with extensive colonic IBD compared with those patients with left sided disease (median 297 micrograms/min (range 132-686 micrograms/min) v median 101 micrograms/min (range 30-433 micrograms/min); p < 0.001)). A strong positive correlation was seen between microalbuminuria and intestinal histopathological score in IBD patient groups with left sided colitis (r = 0.77; p < 0.001) and extensive disease (r = 0.71; p < 0.01). The standard histopathological grading system correlated with the clinical disease activity (r = 0.64; p < 0.005) and CRP (r = 0.62; p < 0.02), however, it did not correlate with ESR. In conclusion, the strong correlation of microalbuminuria with a standard intestinal histopathological grading system suggests that microalbuminuria accurately reflects the severity of colonic inflammation in patients with Crohn's colitis and ulcerative colitis.

Adult↗

Expression of CD44 and its variants on gastric epithelial cells of patients with Helicobacter pylori colonisation.

BACKGROUND: Studies have suggested that expression of the adhesion molecule CD44 may be of prognostic importance in gastric cancer. In addition, there is strong evidence that Helicobacter pylori has a role in gastric cancer. AIMS: To determine the expression of CD44 and its variants (v6, v9) and HLA class II molecules on human gastric epithelial cell and intraepithelial lymphocytes in patients with and without H pylori infection. PATIENTS: Eighteen patients (seven men and 11 women) attending for endoscopic evaluation because of upper gastrointestinal symptoms were included. An additional 10 patients (five men and five women) were analysed for CD44 variant expression). METHODS: Biopsy specimens were taken from the gastric antrum during endoscopy. Gastric epithelial cells and intraepithelial lymphocytes were examined by two colour flow cytometry and compared in patients with and without H pylori infection. RESULTS: Expression of CD44 and its variants (CD44 v9) was increased in epithelial cells but not in intraepithelial lymphocytes. Both epithelial cells and intraepithelial lymphocytes expressed higher levels of HLA class II molecules (DR and DP), possibly as a result of local cytokine production. Furthermore, results showed upregulation of CD44 on a gastric epithelial cell line (AGS) by cytokines and peripheral blood mononuclear cell supernatant. CONCLUSIONS: These data suggest that H pylori, either directly or through a local inflammatory response, is responsible for increased expression of CD44 and its variant CD44 v9. These data are of potential importance in relation to increased expression of CD44 and CD44 v9 on gastric carcinoma.

Adult↗

Increased HLA-DR and decreased CD3 on human intestinal intraepithelial lymphocytes: evidence of activation?

BACKGROUND: Activation of circulating T lymphocytes results in expression of HLA-DR, interleukin-2 receptor (IL-2R), transferrin receptor (TrR), and decreased amounts of surface CD3. AIM: To examine the activation status of human intestinal intraepithelial lymphocytes (IELs) by flow cytometry. PATIENTS AND METHODS: Duodenal biopsy specimens from 12 patients provided a source of intestinal lymphocytes. Dual colour analysis was used to compare activation marker expression by IELs with peripheral blood (PB) T lymphocytes from the same patients. RESULTS: All human IEL populations express HLA-DR and their density of expression is lower than on the small population of HLA-DR+ resting PB T lymphocytes (mean fluorescence intensity (MFI) 52.9, range 19.8-94.8 v 152.6 range, 49.1-320.3; p < 0.01). The density of CD3 was significantly reduced on IELs (MFI 465.8, range 228.7-660), compared with PB T lymphocytes (756.3, range 444.5-1573.7; p < 0.009). IL-2R was not detected on IELs; nor were the activation markers, TrR, M21 C5, or M2 B3. CONCLUSION: HLA-DR expression on IELs together with decreased CD3 expression suggest previous stimulation. However, the absence of additional markers of T cell activation may reflect a unique pathway of activation.

Adult↗