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Biomedical subjects

Ben Vainer

Publications and source records attributed to Ben Vainer.

13 recordsLinked to original sources

The prognostic significance of thymidylate synthase and dihydropyrimidine dehydrogenase in colorectal cancer of 303 patients adjuvantly treated with 5-fluorouracil.

Cytotoxic effect of 5-fluorouracil 5-FU is mediated through inhibition of thymidylate synthase (TS), and 5-FU is catabolised by dihydropyrimidine dehydrogenase (DPD). Efficacy of 5-FU may therefore depend on the TS and DPD activity of colorectal cancer. Archival tumour specimens from 303 consecutive patients were analysed for the expression of TS and DPD using immunohistochemistry. All patients were completely resected for colorectal cancer stages II-III and have subsequently received adjuvant treatment with 5-FU. In a multivariate analysis adjusting for the impact of bowel obstruction and vascular tumour invasion, diffuse TS pattern was significantly associated with increased risk of recurrence (hazard ratio (HR) = 1.9; 95% confidence interval (CI): 1.1-3.2; p = 0.02), but without significant association to death (HR = 1.6; 95% CI: 0.9-2.8; p = 0.08). High TS intensity was not significantly associated with lower risk of recurrence (HR = 0.6; 95% CI: 0.3-1.1; p = 0.07) or death (HR = 0.6; 95% CI: 0.3-1.2; p = 0.2). High DPD intensity was significantly associated with increased risk of recurrence (HR = 1.5; 95% CI: 1.1-2.3; p = 0.03) and death (HR = 1.6; 95% CI: 1.1-2.5; p = 0.02). Patients with a combination of low TS and high DPD intensity were at significantly increased risk of both recurrence (HR = 2.1; 95% CI: 1.0-4.2; p = 0.04) and death (HR = 2.0; 95% CI: 1.0-4.0; p = 0.05). No relationship between tolerability and toxicity of 5-FU and TS and DPD expression was found. It is concluded that characterizing colorectal carcinomas by TS and DPD expression may disclose subsets of patients with significantly greater risk of disease recurrence and early death. This may be utilized in the selection of patients for treatment approaches and for decision on follow-up programs.

Aged↗

Colonic epithelial cell expression of ICAM-1 relates to loss of surface continuity: a comparative study of inflammatory bowel disease and colonic neoplasms.

OBJECTIVE: Intercellular adhesion molecule-1 (ICAM-1) is important in ulcerative colitis (UC) by mediating the arrest and further migration of neutrophils. In vitro studies have shown that colonocytes from chronically inflamed colon and cultured colon cancer cells are capable of expressing ICAM-1. The aim of this study was to assess the ICAM-1 expression in human colonic tissue representing UC, Crohn's disease (CD), adenomas, and adenocarcinomas, with special attention to the epithelium. MATERIAL AND METHODS: Formalin-fixed and paraffin-embedded tissue from the archives of the Department of Pathology of Rigshospitalet University of Copenhagen was examined. Colonic tissue from 10 patients with UC, 10 with CD, 32 adenomas, 27 adenocarcinomas, and 10 lymph node metastases were included. The expression of ICAM-1 was assessed by using the EnVision(+)technique (DakoCytomation). RESULTS: Endothelial ICAM-1 was up-regulated in areas with dense lymphocyte infiltration and near crypt abscesses and ulcerations. Ulcerations were covered by a continuous layer of macrophages and epithelial cells expressing ICAM-1. Similar observations were made in the case of adenomas and adenocarcinomas, but in adenocarcinomas the epithelial ICAM-1 was more diffuse and not related solely to sites of surface destruction. CONCLUSIONS: In the colon, endothelial cells, macrophages, and epithelial cells are in certain conditions capable of expressing ICAM-1. Although the ICAM-1 expression was related to both the degree and the nature of inflammation, the data indicate increased susceptibility of cancer cells to express ICAM-1. Epithelial and macrophage ICAM-1 might be involved in the immune surveillance and the first-line defense of the diseased colon.

Adolescent↗

Comparative studies of superoxide production by microbial wall product-primed neutrophils in ulcerative colitis.

A diminished tolerance to the normal gut bacterial flora has been suggested to be pathogenic in ulcerative colitis (UC) and the aim of this study was to evaluate the priming effect of selected bacterial wall products on UC neutrophil granulocytes. Neutrophils from 10 UC patients and 10 healthy controls were primed with bacterial lipoprotein (BLP) or lipopolysaccharide (LPS) and subsequently activated. Extracellular superoxide production was measured by the cytochrome c reduction assay. Priming neutrophils with BLP or LPS dose dependently increased the superoxide production in both UC and controls (P < 0.01), and BLP was more potent than LPS (P < 0.05). No differences were found between UC and controls. UC neutrophils do not seem to have an intrinsic abnormality with reduced tolerance to bacterial substances. However, bacterial wall products such as BLP modify neutrophil tissue-destruction mechanisms and might be pivotal for perpetuation of chronic colonic inflammation.

Adult↗

Thiopurine methyltransferase (TPMT) genotype distribution in azathioprine-tolerant and -intolerant patients with various disorders. The impact of TPMT genotyping in predicting toxicity.

OBJECTIVE: To study the distribution of the thiopurine methyltransferase (TPMT) genotype among azathioprine (Aza)-tolerant and -intolerant patients with various disorders, and to investigate a possible relationship with the Aza metabolite levels. METHODS: Forty-six Aza-tolerant and six Aza-intolerant patients had the TPMT genotype distribution determined using a polymerase chain reaction (PCR) assay and the forty-six Aza-tolerant patients had the Aza metabolite levels determined using a high-pressure liquid chromatography (HPLC) analysis. RESULTS: One non-functional TPMT mutant allele was demonstrated in 2 of the 46 Aza-tolerant patients (4.4%) and one or two non-functional mutant alleles in 2 of the 6 Aza-intolerant patients (33.3%). Of the 4 patients, with one or two non-functional mutant alleles 2 (50%) were intolerant to Aza compared with 4 of the 48 patients (8.3%) with no mutations detected. The time to hepatotoxicity did not differ significantly between the 2 patients with one or two non-functional mutant alleles and the remaining 3 patients ( P=0.5). The TPMT genotype distribution differed slightly in the three different categories of disorders ( P=0.05). The median E-6-TGN level among the 2 TPMT heterozygous patients was 275 pmol/8x10(8) RBC (range 240-310), whereas the remaining 44 patients had a median E-6-TGN level of 110 pmol/8x10(8) RBC (range 0-440) ( P=0.07). CONCLUSION: Although TPMT genotyping cannot be recommended on behalf of the present study, it is to be expected that half of the patients with one or two non-functional TPMT mutant alleles will develop Aza intolerance leading to withdrawal of therapy. Thus, clinicians may anticipate about 5% of the patients to develop intolerance to Aza therapy solely for that reason.

Adjuvants, Immunologic↗

Expression of ICAM-1 in colon epithelial cells: an ultrastructural study performed on in vivo and in vitro models.

BACKGROUND: Studies have suggested that in ulcerative colitis (UC), intercellular adhesion molecule-1 (ICAM-1) is involved in migration of leukocytes toward the colonic epithelium. A suitable in vitro model of chronic colonic inflammation does not exist, and the role of the epithelium is based on monolayers of cancer cells. Conflicting results exist on epithelial ICAM-1 expression, and the aim of this study was to compare the expression in various models of colonic epithelium. MATERIALS AND METHODS: Colonic biopsies from four UC patients and four controls were examined by cryoimmuno-electron microscopy using ICAM-1-antibodies. In four other controls, the epithelium was isolated from colonic biopsies, embedded in collagen, and evaluated similarly. Isolated crypts and cultured cancer cells were stimulated with interferon-gamma (IFN-gamma) or tumor necrosis factor-alpha (TNF-alpha). RESULTS: ICAM-1 was not expressed in the biopsies. In contrast, HT29 cells and the collagen-embedded crypts expressed ICAM-1 on the apical membranes proximal to the junctional complexes when stimulated with IFN-gamma or TNF-alpha in a dose-related manner. CONCLUSIONS: ICAM-1 is not expressed on colonic epithelium in vivo. However, both colonocytes and HT29 cells were capable of expressing ICAM-1 on their apical membranes in response to supraphysiologic cytokine concentrations. These observations question the justification of extrapolating observations from colon cancer cell lines to in vivo inflammatory conditions.

Adult↗

Ca2+ response in neutrophils after exposure to bacterial N-formyl-methionyl-leucyl-phenylalanine: delayed response in ulcerative colitis.

OBJECTIVE: In acute stages of ulcerative colitis (UC), neutrophils migrate from the circulation into inflamed colonic tissue, initiated by yet unknown stimuli. The bacterial peptide N-formyl-methionyl-leucyl-phenylalanine (FMLP) is a component of the surface membrane of colonic bacteria such as Escherichia coli and stimulates Ca2+ influx into neutrophils, reflecting the fact that ionized calcium is an important secondary messenger for several neutrophil functions, including locomotion, phagocytosis and free oxygen radical production. Recent studies have revealed that Ca2+ dependent ICAM-1/beta 2-integrin mediated neutrophil migration is impaired in UC patients. The aim of the present work was to study the influx of Ca2+ into peripheral blood neutrophils of UC patients after exposure to FMLP and after binding of either beta 2-integrins or intercellular adhesion molecule-1 (ICAM-1). METHODS: The relative intracellular Ca2+ levels ([Ca2+]i ) were measured spectrofluorometrically in neutrophils isolated from eight UC patients and eight controls. The cells were exposed to 1 nm FMLP, 5 pm free ICAM-1, or antibodies binding ICAM-1 or the beta 2-integrins CD11a, CD11b, CD11c and CD18. RESULTS: A pronounced increase in [Ca2+]i was observed by exposure of cells to FMLP, and neutrophils from UC patients showed a consistent and significant delayed response as compared to cells from control subjects (P < 0.01). Antibody mediated cross-linking of CD18 triggered a small but detectable increase in [Ca2+]i, which did not differ between patients and controls. CONCLUSION: A delayed response to bacterial peptides appears to be a phenotypic trait for neutrophils of UC patients. A connection between FMLP stimulated Ca2+ influx and CD11/CD18 upregulation is discussed.

Adult↗

[Inflammatory bowel disease--do microorganisms play a role?].

This review focuses on the potential pathogenic role of microorganisms in relation to inflammatory bowel diseases, i.e. Crohn's disease and ulcerative colitis. Pathogenic microorganism such as Mycobacterium paratuberculosis, measles and mumps viruses, Epstein-Barr virus, and Listeria monocytogenes are discussed, as well as involvement of the normal intestinal flora. Furthermore, the influence of microorganisms in experimental animal colitis models is discussed. The available results are inconclusive, but there seems to be basis for proposing the hypothesis that the inflammation in inflammatory bowel disease reflects an immune imbalance with loss of tolerance for normally harmless antigens in the mucosal microflora.

Animals↗

Microscopic colitis: a missed diagnosis?

CONTEXT: Collagenous colitis and lymphocytic colitis, collectively designated microscopic colitis, have until recently been considered as rare gastrointestinal disorders. New data suggest, however, that these disorders are relatively common, and to reach the correct diagnosis both the gastroenterologist and the pathologist must be aware of these diagnoses when evaluating patients with persistent watery non-bloody diarrhoea. STARTING POINT: In an epidemiological study of a well-defined Swedish population, Martin Olesen and colleagues show that microscopic colitis needs to be considered as a common gastrointestinal disorder (Gut 2004; 53: 346-50). In colonic biopsy specimens from 1018 patients who had a colonoscopy because of non-bloody diarrhoea in 1993-98, 97 patients (9.5%) were found to have microscopic colitis. In about a third of these cases, the diagnosis was missed in the primary histological evaluation. Median age at diagnosis was 64 years for collagenous colitis and 59 years for lymphocytic colitis. The annual incidence of the diseases was higher than previously considered and matched the incidence of Crohn's disease, and in combination they approached the incidence of ulcerative colitis. WHERE NEXT: The high regional incidence of microscopic colitis means that both clinicians and pathologists need to be more aware of the diagnosis, especially in the elderly female population with a clinical picture of watery non-bloody diarrhoea. Because of the potentially disabling symptoms, clinicians need to develop and evaluate new therapies.

Colitis, Microscopic↗

Subcellular localization of intercellular adhesion molecule-1 in colonic mucosa in ulcerative colitis.

Intercellular adhesion molecule-1 (ICAM-1) mediates the firm adhesion of leukocytes to endothelial cells. In ulcerative colitis (UC), ICAM-1 is suggested also to be involved in the further migration of leukocytes toward the epithelial lining, and in colonic tissue it has been reported to be expressed by cell types other than endothelial cells. This study aimed at determining the ultrastructural localization of ICAM-1 on cells belonging to the colonic mucosa from patients with UC. Colonic biopsies from 3 UC patients and 3 control subjects were examined ultrastructurally by immunogold labeling of ICAM-1. ICAM-1 was expressed on the luminal cell membranes of endothelial cells in both controls and inflamed and noninflamed UC colon, although the density was significantly increased in UC (p < .0001). Labeling was observed on the basal endothelial cell membranes and on macrophages and plasma cells in inflamed UC colon only. Epithelial cells did not express ICAM-1. ICAM-1 appears to be constitutively upregulated on the luminal endothelial membrane in UC, and the expression on basal endothelial membranes in active UC only suggests that ICAM-1 is more extensively involved in the leukocyte migration than previously acknowledged.

Biopsy↗