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Guidelines for the treatment of ulcerative colitis in remission.

The role is reviewed of sulphasalazine, 5-aminosalicylic acid (5-ASA), immunosuppressive agents and corticosteroids in the maintenance treatment of ulcerative colitis in remission. Sulphasalazine and oral 5-ASA are the drugs of first choice in preventing relapses for patients suffering from intermittent chronic ulcerative colitis. Rectally administered 5-ASA may be a valid alternative for treating patients with proctitis and left-sided ulcerative colitis. The optimal dosage of oral 5-ASA in the maintenance therapy of ulcerative colitis in remission is not clear. However, there is evidence that a higher dose of 5-ASA is more effective than low dosage in preventing relapses in patients in remission. For patients with chronically active or steroid-dependent ulcerative colitis who have achieved remission while taking immunosuppressants, continuing azathioprine or 6-mercaptopurine is indicated. Existing data cast doubts as to whether or not continuous maintenance is still necessary in patients suffering from intermittent chronic ulcerative colitis with prolonged endoscopic, clinical and histological remission.

Adrenal Cortex Hormones↗

Persistent activation of coagulation and fibrinolysis after treatment of active ulcerative colitis.

OBJECTIVE: Haemostatic changes may be involved in the pathogenesis and progression of ulcerative colitis. We studied longitudinally inflammatory and haemostatic parameters in patients treated for severe ulcerative colitis. DESIGN AND SETTING: We carried out a descriptive study of longitudinal blood measurements in patients with severe ulcerative colitis from one large regional hospital. METHODS: Nineteen patients with severe ulcerative colitis were assessed by an endoscopic score and a patient score at baseline. Patients were assessed by patient scores during treatment at scheduled intervals. At each visit, inflammatory and haemostatic parameters were determined. RESULTS: At baseline, the erythrocyte sedimentation rate, C-reactive protein, leucocyte and granulocyte count, thrombin-antithrombin complexes, prothrombin fragment 1+2, fibrinogen and degradation products of fibrinogen and fibrin were increased in patients when compared with controls, whereas albumin concentration and factor XIII activity were significantly lower. Antithrombin activity was normal. During treatment, the median patient score diminished significantly from 12 to 4.5 points after 2 weeks, decreased further to 4 points after 4 weeks and remained below 4 points throughout the remaining study period. Inflammation parameters returned to within the reference range in two patients after 4 weeks, whereas the coagulation markers prothrombin fragment 1+2 and thrombin-antithrombin complexes returned to normal values after 8 weeks and 24 weeks, respectively. In contrast with markers of inflammation, slightly increased concentrations of the degradation products of both fibrinogen and fibrin were found for almost 1 year, which indicated low-grade activation of coagulation and fibrinolysis. CONCLUSIONS: These results are compatible with a condition of persistent hypercoagulation in patients with ulcerative colitis who are in clinical remission. Persistent hypercoagulation may contribute to the clinical course of ulcerative colitis.

Adult↗

Lactobacillus plantarum 299V in the treatment and prevention of spontaneous colitis in interleukin-10-deficient mice.

Interleukin (IL)-10-deficient (IL-10-/-) mice develop colitis under specific pathogen-free (SPF) conditions and remain disease free if kept sterile (germ free [GF]). We used four different protocols that varied the time-points of oral administration of Lactobacillus plantarum 299v (L. plantarum) relative to colonization with SPF bacteria to determine whether L. plantarum could prevent and treat colitis induced by SPF bacteria in IL-10-/- mice and evaluated the effect of this probiotic organism on mucosal immune activation. Assessment of colitis included blinded histologic scores, measurements of secreted colonic immunoglobulin isotypes, IL-12 (p40 subunit), and interferon (IFN)-gamma production by anti-CD3-stimulated mesenteric lymph node cells. Treating SPF IL-10-/- mice with L. plantarum attenuated previously established colonic inflammation as manifested by decreased mucosal IL-12, IFN-gamma, and immunoglobulin G2a levels. Colonizing GF animals with L. plantarum and SPF flora simultaneously had no protective effects. Gnotobiotic IL-10-/- mice monoassociated with L. plantarum exhibited mild immune system activation but no colitis. Pretreatment of GF mice by colonization with L. plantarum, then exposure to SPF flora and continued probiotic therapy significantly decreased histologic colitis scores. These results demonstrate that L. plantarum can attenuate immune-mediated colitis and suggest a potential therapeutic role for this agent in clinical inflammatory bowel diseases.

Administration, Oral↗

Interleukin 10-deficient mice exhibit defective colonic Muc2 synthesis before and after induction of colitis by commensal bacteria.

Germ-free (GF) interleukin 10-deficient (IL-10) mice develop chronic colitis after colonization by normal enteric bacteria. Muc2 is the major structural component of the protective colonic mucus. Our aim was to determine whether primary or induced aberrations in Muc2 synthesis occur in GF IL-10 mice that develop colitis after bacterial colonization. GF IL-10 and wild-type mice were colonized with commensal bacteria for various intervals up to 6 weeks. Colitis was quantified by histologic score and IL-12 secretion. Muc2 synthesis, total level of Muc2, and Muc2 sulfation were measured quantitatively. GF IL-10 mice showed 10-fold lower Muc2 synthesis and Muc2 levels compared with GF wild-type mice, but Muc2 sulfation was not different. When bacteria were introduced, IL-10 mice developed colitis, whereas wild-type mice remained healthy. Muc2 synthesis was unchanged in wild-type mice, but IL-10 mice showed a peak increase in Muc2 synthesis 1 week after bacterial introduction, returning to baseline levels after 2 weeks. Total Muc2 levels decreased 2-fold in wild-type mice but remained at stable low levels in IL-10 mice. Upon introducing bacteria, Muc2 sulfation increased 2-fold in wild-type mice, whereas in IL-10 mice Muc2 sulfation decreased 10-fold. In conclusion, a primary defect in colonic Muc2 synthesis is present in IL-10 mice, whereas bacterial colonization and colitis in these mice led to reduced Muc2 sulfation. These quantitative and structural aberrations in Muc2 in IL-10 mice likely reduce the ability of their mucosa to cope with nonpathogenic commensal bacteria and may contribute to their susceptibility to develop colitis.

Animals↗

Risk factors for colorectal cancer in Crohn's colitis: a case-control study.

BACKGROUND: Few data exist regarding exposures associated with colorectal cancer (CRC) in patients with Crohn's colitis. The aim of this study was to identify exposures that alter the risk of CRC in patients with Crohn's colitis. METHODS: The Research Patient Database Registry at Massachusetts General Hospital was searched to identify cases and controls. Cases had a confirmed diagnosis of Crohn's disease involving at least one third of the colon and a confirmed diagnosis of colorectal adenocarcinoma. Matched controls were randomly chosen from the same source population. Paired univariate analysis was performed to develop an odds ratio (OR) for each exposure. RESULTS: Twenty-seven patients were found to have Crohn's colitis and CRC. Colonoscopy performed for screening or surveillance was associated with an OR of 0.21 (95% CI 0.04-0.77; P=0.02). Nonsignificant trends for a protective effect included prior appendectomy (OR 0.30; 95% CI 0.05-1.17; P=0.10) and regular 5-aminosalicylate use (OR 0.30; 95% CI 0.05-1.17; P=0.10). Smoking history was associated with a 4-fold-increased risk for CRC, but this was not statistically significant (OR 4.00; 95% CI 0.80-38.67; P=0.11). CONCLUSIONS: We found that having a colonoscopy for an indication of surveillance or screening is associated with decreased risk of CRC in the setting of Crohn's colitis. These data underscore the importance of CRC surveillance for Crohn's colitis in addition to ulcerative colitis and should prompt further study in this area.

Adolescent↗

Diagnosis and management of microscopic colitis syndrome.

Microscopic colitis syndrome consists of chronic watery diarrhea, a normal or near-normal gross appearance of the colonic mucosa, and a specific histologic picture described as either lymphocytic colitis or collagenous colitis. The cause of microscopic colitis is unknown, but recent work suggests some immunologic similarities to celiac disease, suggesting that luminal antigens may be important in its pathogenesis. Diarrhea in microscopic colitis seems to be directly related to the extent of inflammation, suggesting that inflammatory mediators are responsible for reduced water absorption by the colon. Microscopic colitis is a frequent diagnosis in patients with chronic diarrhea seen at referral centers. It is often associated with other immune-mediated conditions and frequently is complicated by fecal incontinence. The differential diagnosis is broad, comprising all causes of watery diarrhea. Evaluation is straightforward with the key aspect being review of colon biopsy specimens by an experienced pathologist. Treatment is still being defined: symptomatic management with antidiarrheal agents, 5-aminosalicylate drugs, corticosteroids, especially budesonide, bile acid-binding resins, and bismuth subsalicylate all can be effective. The prognosis is good with no evidence of conversion to classic inflammatory bowel disease or of development of neoplasia over time.

Anti-Inflammatory Agents, Non-Steroidal↗

Nonpathogenic Escherichia coli strain Nissle1917 prevents murine acute and chronic colitis.

BACKGROUND: Nonpathogenic Escherichia coli strain Nissle1917 has been used as a probiotics in human inflammatory bowel disease; however, there are few reports examining its therapeutic effect on animal colitis models, and its therapeutic mechanisms remain unknown. The aim of this study was to elucidate the therapeutic effect and mechanism of Nissle1917 using murine acute and chronic colitis models. METHODS: Two models were used. (1) Acute model: colitis was induced by administration of 1.3% dextran sodium sulfate for 7 days. Nissle1917 or phosphate-buffered saline were orally administered for 10 days. Mice were killed at day 10, and the colonic lesions were assessed macro- and microscopically. (2) Chronic model: IL-10 mice were treated with Nissle1917 or phosphate-buffered saline for 8 weeks. After 8 weeks of treatment, mice were killed to assess the colonic lesions macro- and microscopically. In the acute dextran sodium sulfate colitis model, viable, heat-killed, or genomic DNA of Nissle1917 was orally administered for 10 days, and the therapeutic effect was assessed. RESULTS: In the acute model, Nissle1917 ameliorated body weight loss, disease activity index, and macro- and microscopic damage. In the chronic model, it also suppressed the mucosal inflammatory findings and histologic damages. Moreover, heat-killed Nissle1917 or its genomic DNA alone also ameliorated the acute DSS colitis and viable bacteria macro- and microscopically. CONCLUSIONS: Nonpathogenic E. coli strain Nissle1917 prevents both acute and chronic colitis, and its anti-inflammatory effect is exhibited not only by viable bacteria but also by heat-killed bacteria or its DNA.

Acute Disease↗

Integrin alpha2beta1 regulates neutrophil recruitment and inflammatory activity in experimental colitis in mice.

BACKGROUND: Human inflammatory bowel disease (e.g., Crohn's disease and ulcerative colitis), is associated with leukocyte accumulation in the inflamed intestinal tissue. Recent studies strongly suggest a role of beta1 integrin receptors in regulating tissue damage and disease symptoms related to inflammatory bowel disease. The aim of this study was to investigate the role of the collagen-binding alpha2beta1 integrin (CD49b/CD29) in dextran sodium sulfate-induced colitis in mice. METHODS: Colitis was induced in mice through oral administration of 2% dextran sodium sulfate in drinking water. Rectal administration of anti-alpha2-monoclonal antibody (mAb) in 1 group was compared with oral treatment with betamethasone in another group and rectal administration of a control antibody in a third group. Clinical and histological signs of colitis, neutrophil infiltration into the colon mucosa, and gene expression of metalloproteinases were assessed. RESULTS: Rectal administration of anti-alpha2-mAb was found to significantly reduce weight loss from 13.5% +/- 6.5% to 2.2% +/- 0.2% (P = 0.013 versus control mAb) and mucosal neutrophil infiltration from 47.2 +/- 10.0 to 6.6 +/- 8.0 neutrophils per counted area (P < 0.05 versus control mAb). Metalloproteinase gene expression was suppressed through anti-alpha2-mAb treatment. The protective effect against colitis seen after anti-alpha2beta1 integrin treatment was found to be favorable to the effect seen after high-dose oral betamethasone. CONCLUSIONS: We demonstrate an alleviating action of the collagen-binding alpha2beta1 integrin in experimental colitis in mice and suggest that this effect is mediated by inhibition of neutrophil migration and activation. Local administration of function-blocking antibodies against integrin alpha2beta1 may provide novel avenues to treat inflammatory bowel disease.

Analysis of Variance↗

5-lipoxygenase modulates the alteration of paracellular barrier function in mice ileum during experimental colitis.

Small intestine permeability is frequently altered in inflammatory bowel disease and may be caused by the translocation of intestinal toxins through leaky small intestine tight junctions (TJs) and adherence. Recently, it has been shown that 5-lipoxygenase (5-LO) plays an important role in the development of various inflammatory conditions like inflammatory bowel disease. In the present study, by comparing the responses in wild-type mice (5-LOWT) with those of mice lacking the 5-lipoxygenase (5-LOKO), we investigated the role played by this enzyme in the permeability and structure of small intestine TJs in an animal model of experimental colitis. To address this question, we used an experimental model of colitis, induced by dinitrobenzene sulfonic acid (DNBS). Four days after colitis induction by DNBS, the ileal TJs were studied by means of transmission electron microscopy using lanthanum nitrate and immunohistochemistry of occludin and ZO-1. When compared with DNBS-treated 5-LOWT mice, DNBS-treated 5-LOKO mice experienced a reduced rate of the extent and severity of the histological signs of colon injury. After administration of DNBS, 5-LOWT mice showed a significant increase of ileal permeability (88.3% +/- 1.2%) compared with sham (5.6% +/- 0.5%). In colitis, the percentage of "leaky" junctions in terminal ilea correlated positively with the macroscopic colon damage score. Distal colitis in 5-LOWT mice induces an increase of TJ permeability throughout the entire small intestine, and the extent of alterations correlates with colonic damage. On the contrary, a significant reduction of (1) the degree of colon injury, (2) the alteration of ZO-1 and occludin localization (immunohistochemistry), and (3) ileal permeability (8.1% +/- 0.7%) caused by DNBS in the colon was observed in 5-LOKO mice. Similarly, the treatment of 5-LOWT with zileuton (50 mg/kg per oral gavage twice a day), a 5-LO inhibitor, resulted in a significant reduction of all the previously described parameters. Taken together, our results clearly demonstrate that 5-LO modulates small intestinal permeability in experimental colitis through the regulation of TJ protein.

Animals↗

Defects in mucosal immunity leading to ulcerative colitis.

Evidence accumulated over the last decade demonstrates that what we call 'ulcerative colitis' is actually a heterogeneous group of diseases resulting from different pathogenic mechanisms with a common symptomatic expression. Subgroups of patients with ulcerative colitis can be stratified by presence or absence of serum autoantibodies, which are thought not to be pathogenic but to mark for a distinct disease phenotype. In recent years, animal-based experimental systems have emerged that reflect human ulcerative colitis and have potential to accelerate our understanding of its pathogenesis. Genetic and immunological data from human studies in combination with results from animal model systems are the foundation of a hypothesis, which includes a role for microbial antigen exposure in the initiation, perpetuation, and amplification of the disease. In ulcerative colitis, it appears as though the T-cell response to the antigens is not T-helper (Th) 1 dominant as in the case of Crohn's disease but rather is either Th2 [interleukin (IL)-4, IL-13] or is mediated by specialized cells such as natural killer (NK) T cells (IL-13). Lamina propria T cells from ulcerative colitis patients produce significantly greater amounts of IL-13. Ulcerative colitis is associated with an atypical Th2 response mediated by a distinct subset of NK T cells that produce IL-13 and are cytotoxic for epithelial cells. The way in which this response affects the ultimate cascade of inflammatory events has yet to be determined.

Animals↗

Systematic review: the epidemiology of ischaemic colitis.

BACKGROUND: Ischaemic colitis has been associated with co-morbid conditions, medications, vascular surgery and advanced age in case reports and case series. Few data exist on the baseline incidence in the general population or on the increased risk imposed by these risk factors. AIM: To systematically review the literature regarding the incidence, prevalence and risk factors for ischaemic colitis. METHODS: Searches of bibliographic databases were performed independently by two investigators. Studies were included if they used population-based samples, disease-specific population samples or case-control population-based samples of adults with ischaemic colitis, and reported the incidence, prevalence or risk factors for ischaemic colitis. Eligible articles were reviewed and data were abstracted in a duplicate, independent manner. RESULTS: Four studies were identified that reported the general population incidence and four that reported the disease-specific population incidence. The incidence of ischaemic colitis in general populations ranged from 4.5 to 44 cases per 100 000 person-years. The risk was increased two- to four-fold by either prevalent irritable bowel syndrome or chronic obstructive pulmonary disease. The risk was also increased in females and in subjects of 65 years and older. CONCLUSIONS: Ischaemic colitis is uncommon in the general population. The effect sizes of the most commonly reported risk factors have not been adequately quantified in population-based studies.

Adult↗

Inflammatory gene signature in ulcerative colitis with cDNA macroarray analysis.

BACKGROUND: Most array analyses of ulcerative colitis have focused on identifying susceptibility genes for ulcerative colitis. AIM: To clarify the changes in gene expression during inflammation in ulcerative colitis colon mucosa using cDNA macroarray. METHODS: From 23 ulcerative colitis patients, 16 each of inflamed and non-inflamed specimens (total 32 samples for individual analysis) were obtained by colonoscopic biopsy. Eighteen of the 32 samples, used for pairwise analysis, consisted of nine sample pairs, each pair being from the same patient. We examined expression profiles of approximately 1300 genes with cDNA macroarray. Comparisons were made using two kinds of statistics, t-test and significance analysis of microarray in both analyses. The reproducibility of significant genes from the macroarray analysis was confirmed by real-time ploymerase chain reaction. RESULTS: We detected five upregulated genes, categorized into proinflammatory genes (MRP14, GRO gamma and SAA1) and anti-inflammatory genes (TIMP1 and Elafin) in inflamed mucosa, and one upregulated gene (L-FABP) in non-inflamed mucosa. CONCLUSIONS: As the cDNA macroarray analysis in this study exactly reflects the total profile of gene expression in the clinical setting of ulcerative colitis, the genes identified will be directly applicable to diagnostics or as novel therapeutic targets in active ulcerative colitis.

Acrosome↗

Enhanced secretion of tumour necrosis factor-alpha, IL-6, and IL-1 beta by isolated lamina propria mononuclear cells from patients with ulcerative colitis and Crohn's disease.

The perpetuation of inflammation in ulcerative colitis and Crohn's disease may be regulated in part by an increased secretion of proinflammatory cytokines due to either an appropriate response to initial stimulating agents, and/or due to an impaired down-regulation of cytokine secretion. The aim of this study was to determine the secretion patterns of the proinflammatory cytokines tumour necrosis factor-alpha (TNF-alpha), IL-6 and IL-1 beta, from isolated lamina propria mononuclear cells (LPMNC) isolated from colonic biopsies from patients with untreated ulcerative colitis or Crohn's disease. LPMNC isolated from involved inflammatory bowel disease (IBD) mucosa spontaneously produced increased amounts of TNF-alpha, and IL-6, and IL-1 beta. The TNF-alpha secretion from IBD LPMNC could be further enhanced by pokeweed mitogen stimulation. The secretion patterns of TNF-alpha and IL-1 beta by LPMNC from patients with either ulcerative colitis or Crohn's disease demonstrated a close correlation with the degree of tissue involvement and mucosal inflammation. LPMNC from non-involved ulcerative colitis mucosa secreted markedly increased levels of IL-6 compared with non-involved Crohn's disease mucosa or control mucosa. The heightened IL-6 secretion from LPMNC from non-involved ulcerative colitis mucosa without visible or microscopic signs of inflammation indicates that the pathophysiologic mechanisms involved in the initiation of inflammation may differ between ulcerative colitis and Crohn's disease. The determination of proinflammatory cytokine secretion by isolated LPMNC from colonoscopic biopsies may be a sensitive method for monitoring the severity of mucosal inflammation in IBD patients.

Adult↗

Involvement of interleukin 18 in Crohn's disease: evidence from in vitro analysis of human gut inflammatory cells and from experimental colitis models.

An imbalance of immunoregulatory factors and/or cells contributes to uncontrolled mucosal T cell activation and inflammation in Crohn's disease (CD). Bioactive interleukin (IL)-18 has been shown to be produced by macrophages in CD lesions. We report here that T cells freshly isolated from inflamed tissue of CD patients (and not T cells from control intestinal tissue) were responsive to IL-18. In the presence of IL-18, these T cells produced more interferon (IFN)-gamma and less IL-10. To analyse further the role of IL-18 in this disease, an acute and a chronic model of murine colitis were used. IL-18 mRNA was significantly enhanced in trinitrobenzene sulphonic acid (TNBS) induced colitis, and treatment with IL-18 binding protein (IL-18BPa), which neutralizes IL-18 bioactivity, significantly reduced the severity of colitis. However, IL-18BPa did not affect the course of chronic colitis in CD45RBhighCD4+ T cell reconstituted SCID mice. Production of IFN-gamma in lamina propria mononuclear cell cultures from IL-18BPa-treated SCID mice was decreased, but at the same time fewer lamina propria CD4+ T cells harvested from IL-18BPa-treated mice compared to non-treated mice were in apoptosis. We conclude that IL-18 clearly has a modulatory role in the inflammatory cascade of CD and experimental colitis by affecting IFN-gamma and IL-10 production, and apoptosis. In view of the divergent effects of IL-18 neutralization in the two different murine colitis models, it is unlikely that IL-18 is at the top of this cascade.

Adult↗

Acellular Bordetella pertussis vaccine enhances mucosal interleukin-10 production, induces apoptosis of activated Th1 cells and attenuates colitis in Galphai2-deficient mice.

Mice deficient for the inhibitory G protein subunit alpha2 (Galphai2(-/-)) spontaneously develop a progressive inflammatory bowel disease resembling ulcerative colitis, and have a T helper 1 (Th1)-dominated immune response prior to onset of colitis, which is further augmented after the onset of disease. The present study was performed to investigate whether the Galphai2(-/-) mice were able to down-regulate the Th1-dominated inflammatory mucosal immune response and/or induce an anti-inflammatory Th2/T regulatory response and thereby diminish the severity of colitis following treatment with acellular Bordetella pertussis vaccine. The acellular vaccine against B. pertussis, the causative agent of whooping cough, has been demonstrated to induce a Th2-mediated response in both man and mice. We therefore treated Galphai2(-/-) mice intraperitoneally with a three-component acellular B. pertussis vaccine. The treated Galphai2(-/-) mice showed significantly increased interleukin (IL)-10 production in intestinal tissue, associated with significantly reduced colitis and decreased mortality, compared to untreated Galphai2(-/-) mice. The attenuation of colitis in Galphai2(-/-) mice was due, at least partly, to the B. pertussis surface antigen filamentous haemagglutinin (FHA), which almost completely inhibited proliferation of CD4(+) T cells and stimulated apoptosis of activated CD4(+) T helper 1 cells. In conclusion, the three-component acellular B. pertussis vaccine containing filamentous haemagglutinin increases the production of IL-10 in the intestinal mucosa, induces apoptosis of activated Th1 cells and attenuates colitis in Galphai2(-/-) mice.

Adhesins, Bacterial↗

Misplaced epithelium in ulcerative colitis and Crohn's disease of the colon and its relationship to malignant mucosal changes.

The presence of misplaced mucosal epithelium was studied in the colectomy specimens from 30 patients with Crohn's disease, 30 patients with ulcerative colitis, 15 patients with ulcerative colitis complicated by carcinoma and 30 patients with non-colitic colorectal carcinoma. Misplaced epithelium was present in 21 (70%) of the resection specimens with Crohn's disease, 20 (66.7%) with ulcerative colitis and 12 (80%) with ulcerative colitis complicated by carcinoma. None of the specimens with non-colitic colorectal adenocarcinoma showed misplaced foci of epithelium. Two pathogenetic mechanisms for epithelial misplacement are proposed: (1) the effects of mucosal inflammation and repair; and (2) muscular abnormalities in inflammatory bowel disease. The proposed mechanisms and patterns of epithelial misplacement are discussed and illustrated. The importance of its recognition is emphasized because, when associated with mucosal dysplasia, difficulties in interpretation arise in distinguishing it from 'early' invasive adenocarcinoma. Epithelial misplacement is common in patients with longstanding ulcerative colitis and may be a factor in increasing the significance of pre-existing mucosal dysplasia and promoting the development of adenocarcinoma. This may explain the unusual growth pattern encountered in ulcerative colitis, of submucosal cancer underlying a flat, non-dysplastic mucosa.

Adenocarcinoma↗

Identification and evaluation of a possible signal of exacerbation of colitis during rofecoxib treatment, using Prescription-Event Monitoring data.

BACKGROUND: Identifying previously unrecognized adverse drug reactions (signals) is an important part of post-marketing surveillance. Automated signal generation now forms part of routine surveillance of spontaneous adverse drug reactions reported to the UK Yellow Card system. The Drug Safety Research Unit (DRSU) provides an additional post-marketing drug surveillance scheme in the UK, using the non-interventional observational cohort technique of Prescription-Event Monitoring (PEM), and systematically collects data on patients who were prescribed selected newly licensed drugs in primary care clinical practice. The introduction of a new computer system in January 2000 enabled the development of an automated signal generation system to compliment the process of identification of possible safety signals in drug data collected using PEM. AIMS: To use incidence rate ratios (IRRs) as a form of signal generation in the DSRU database, with particular interest in rofecoxib, plus further evaluation of any signal(s) of interest by requesting additional information from the general practioner (GP) of each relevant case. METHODS: Crude IRRs were calculated for each event term of interest by comparing the incidence rate for each lower term event reported in rofecoxib users with the comparable incidence rate for the whole PEM database (77 drugs of various therapeutic classes) from the total person-exposure time up to 180 days after starting the drug. To investigate a possible class effect, IRRs were also calculated using a second comparator cohort including only those PEM study drugs within the same therapeutic class (non-steroidal anti-inflammatory drugs, NSAIDs) and used for similar indications. Cases arising out of potential signals were followed up for additional information. RESULTS: A potential signal of 'colitis' was identified when rofecoxib was compared with the rest of the database, IRR 5.8 (95% CI 2.7,11.3; z statistic 5.6), and when the comparator group was changed to include only the other four NSAIDs, IRR 4.3 (95% CI 1.4,14.5; z statistic 2.8). Other possible signals, compared with the rest of the database, included events deemed to be related to the underlying condition, labelled adverse events and events describing effectiveness of treatment. Further evaluation of this signal revealed that there were 11 reports of colitis (two reports for one patient) that occurred while taking rofecoxib and within 180 days of exposure. A causality assessment for these 10 patients did not confirm an association with newly developing colitis, but showed that the events were 'possible' exacerbations of pre-existing colitis during treatment with rofecoxib. CONCLUSIONS: The use of IRRs for signal generation using PEM data is worthwhile and enables time to be taken into account. Previously unrecognized adverse events require further evaluation to confirm that a possible safety signal exists. In this study, the number of patients reported to have colitis was small but compared with other drugs on the database, the incidence rate was relatively high. Follow-up revealed a possible relationship between exacerbation of pre-existing colitis and treatment with rofecoxib. Hypotheses arising from signal generation require evaluation and cannot be taken as a conclusive evidence for clinical differences in the safety profiles of drugs.

Adverse Drug Reaction Reporting Systems↗

Colonic mucosal antioxidant enzymes and lipid peroxide levels in normal subjects and patients with ulcerative colitis.

Oxygen-derived free radicals have been implicated in the pathogenesis of ulcerative colitis. Mammalian tissues contain antioxidant systems that offer protection from the damaging effect of these active species. In the present study, the activity of the antioxidant enzymes catalase, glutathione peroxidase, glutathione transferase and glutathione reductase were measured in rectal biopsies from patients with ulcerative colitis and compared with that obtained from normal subjects. A significant decrease in the activity of glutathione transferase was observed in ulcerative colitis (48.32 +/- 6.73 units/mg protein, mean +/- s.e.) compared to normal (68.20 +/- 6.83; P = 0.015). There was no difference in the activity of other antioxidant enzymes between controls and ulcerative colitis. Myeloperoxidase, a marker for neutrophil infiltration, was considerably increased in ulcerative colitis while malonaldehyde, the end product of lipid peroxidation, was not increased. The reduced activity of glutathione transferase in ulcerative colitis may be an additional factor in the pathogenesis of mucosal damage in this disease.

Adult↗