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Biomedical subjects

F Karmeli

Publications and source records attributed to F Karmeli.

At least 37 records · Page 2Linked to original sources

Therapeutic effect of colloid bismuth subcitrate in experimental colitis in the rat.

Colloid bismuth subcitrate (CBS) has a protective effect on ulcerated gastric and duodenal mucosa. To investigate its effect on large intestinal mucosal injury, we used acetic acid-induced colitis in the rat. Colitis was produced in male Wistar rats by rectal instillation of 1 ml of 10% acetic acid followed immediately by 1.5 ml of NaCl 0.9% (saline) enema. 1.5 ml of saline containing 240 mg of CBS or saline alone were then administered rectally every 24 h for 5 days. Another group of animals received CBS only. On the sixth day the distal colon was examined macroscopically and histologically using a 0 (normal) to 3 (necrosis) score. Prostaglandin E2 (PGE2) was measured by RIA (ng/mg protein). CBS significantly reduced both macroscopic and microscopic scores from 2.09 to 1.25 (p < 0.02) and from 2.4 to 1.08 (p < 0.02) respectively. It also induced a significant reduction in PGE2 from 1.6 to 0.57 (p < 0.004) in the inflamed colonic mucosa. The significant protective effect of topical CBS, which is accompanied by a reduction of PGE2, indicates that CBS may have a role in the treatment of colitis.

Acetates

Transforming growth factor-beta gene therapy ameliorates experimental colitis in rats.

OBJECTIVE: To modulate experimental colitis by the direct intramuscular injection of cDNA expression vector encoding transforming growth factor-beta 1. METHODS: Colitis was induced in rats by the intracolonic administration of 0.25 ml 50% ethanol containing 30 mg trinitrobenzene sulfonic acid. Three and 10 days later the rats were injected intramuscularly with 200 micrograms transforming growth factor-beta 1 cDNA subcloned to the pRSV expression vector (pRSVTGF-beta 1). Control rats were injected with pRSVP2. The rats were sacrificed 2 weeks after trinitrobenzene sulfonic acid treatment and a 10 cm long distal colonic segment was resected, weighted, the lesion area measured, sections obtained for histology and the mucosa extracted for determination of myeloperoxidase activity and leukotriene generation. RESULTS: In pRSVP2-treated rats (n = 17) the colon was inflamed and ulcerated with many adhesions to adjacent structures; the pRSVTGF-beta 1-treated rats (n = 21) had minimal swelling and inflammation in the colon. On histological examination 50% of the pRSVTGF-beta 1-treated rats had minimal or no ulceration, whereas 83% of the pRSVP2-treated rats had a maximal damage score. In pRSVTG-beta 1-treated rats the lesion area and wet weight were 21 and 52.5%, respectively, of the values for pRSVP2-treated rats (P < 0.05). The amelioration of tissue injury was accompanied by a significant decrease in mucosal leukotriene C4 generation. CONCLUSIONS: Direct intramuscular transforming growth factor-beta 1 gene delivery effectively ameliorates trinitrobenzene sulfonic acid-induced colitis, suggesting that gene therapy with immunosuppressive cytokines may be a novel approach for the treatment of inflammatory bowel disease.

Animals

Somatostatin effectively prevents ethanol- and NSAID-induced gastric mucosal damage in rats.

The interrelationship between somatostatin and its synthetic analog, sandostatin, with neuropeptides and inflammatory mediators, as well as their protection of gastric mucosal damage, were tested in rats. Rats were treated intragastrically with 1.0 ml of 96% ethanol with or without intravenous or intraperitoneal coadministration of somatostatin (1.0 microM/kg). Mucosal damage was also induced by the administration of either indomethacin (30 mg/kg subcutaneously) with or without intravenous sandostatin (10 micrograms/rat), given 30 min prior to damage induction. Somatostatin levels in ethanol-damaged gastric mucosa were significantly lower than in control rats. Substance P and vasoactive intestinal peptide (VIP) levels were significantly higher in the damaged mucosa in rats treated with ethanol, as was the mucosal generation of leukotriene B4 (LTB4) and cysteinyl-containing leukotrienes. The coadministration of somatostatin with ethanol significantly reduced gastric mucosal injury induced by ethanol alone. The protection of the mucosa was accompanied by reduction of mucosal substance P and VIP levels, as well as the generation of leukotrienes, an effect that was reversed by intraperitoneal or intravenous coadministration of somatostatin antagonist, cyclo-(7-aminoheptanoyl-PH-E-D-Trp-Lys-THR), 1.0 microM/100 g, with somatostatin (1.0 microM/kg) and ethanol. When given by itself somatostatin significantly reduced mucosal leukotriene generation compared with their generation in saline-treated rats. Sandostatin completely abolished gastric mucosal damage induced by indomethacin administration. In rats treated with somatostatin and indomethacin, this effect was accompanied by reduction of mucosal leukotriene generation. Administration of sandostatin to pylorus-ligated rats significantly reduced gastric acid output.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Enhanced gastric nitric oxide synthase activity in duodenal ulcer patients.

Nitric oxide, the product of nitric oxide synthase in inflammatory cells, may have a role in tissue injury through its oxidative metabolism. Nitric oxide may have a role in the pathogenesis of duodenal ulcer and may be one of the mechanisms responsible for the association between gastric infection with Helicobacter pylori and peptic disease. In this study, calcium independent nitric oxide synthase activity was detected in human gastric mucosa suggesting expression of the inducible isoform. In 17 duodenal ulcer patients gastric antral and fundic nitric oxide synthase activity was found to be two and 1.5-fold respectively higher than its activity in the antrum and fundus of 14 normal subjects (p < 0.05). H pylori was detected in the antrum of 15 of 17 duodenal ulcer patients and only in 7 of 14 of the control subjects. Antral nitric oxide synthase activity in H pylori positive duodenal ulcer patients was twofold higher than in H pylori positive normal subjects (p < 0.05). In duodenal ulcer patients antral and fundic nitric oxide synthase activity resumed normal values after induction of ulcer healing with ranitidine. Eradication of H pylori did not further affect gastric nitric oxide synthase activity. These findings suggest that in duodenal ulcer patients stimulated gastric mucosal nitric oxide synthase activity, though independent of the H pylori state, may contribute to the pathogenesis of the disease.

Acute Disease

A novel antiulcerogenic stable radical prevents gastric mucosal lesions in rats.

The pathogenesis of gastric mucosal injury is still poorly understood. Recent reports implicate redox active metals and reactive oxygen species as mediators of gastric damage induced by ethanol or non-steroidal anti-inflammatory drugs. Attempts were made therefore to prevent gastric injury using chelators and the antioxidant enzymes catalase and superoxide dismutase. These attempts, at best, would only detoxify extracellular reactive species, such as those produced by activated circulating granulocytes and macrophages. This study utilises another strategy by pre-emption of both intra and extracellular reactive species using radical-radical annihilation reactions and by detoxifying redox active transition metals. Nitroxide, stable free radicals were shown to enter mucous cells, protect against the ethanol induced damage, and prevent gastric lesions induced by aspirin, indomethacin, 25% NaCl, or 0.6 N HCl. These findings confirm that gastric mucosal damage from the above agents is mediated by free radicals and, moreover, introduce a prototypical agent within a potential new class of gastric ulcer preventing drugs.

Animals

The effect of nizatidine on duodenal ulcer healing and on mucosal inflammatory mediators.

The aim of this double-blind, randomized, placebo-controlled trial was to evaluate the effect of nizatidine on duodenal ulcer healing and generation of mucosal prostaglandin estradiol and inflammatory mediators. Fifty-five patients with endoscopically proven active duodenal ulcer received either nizatidine 300 mg or placebo, once nightly, for 4 weeks, when a second endoscopy was performed. Healing was defined as complete epithelialization of the ulcer crater. At both endoscopies mucosal biopsies were obtained for determination of prostanoids and inflammatory mediators. Nizatidine and placebo induced ulcer healing in 76% and 60.9% of the patients, respectively, but the difference did not reach statistical significance. Nizatidine treatment did not significantly affect mucosal leukotriene B4, leukotriene C4 or platelet activating factor generation. It is concluded, therefore, that the antisecretory effect is probably the main mechanism responsible for nizatidine's therapeutic effects in peptic ulcer disease.

Adult

Role of vasoactive intestinal peptide (VIP) in pathogenesis of ethanol-induced gastric mucosal damage in rats.

To elucidate the possible role of vasoactive intestinal peptide (VIP) in the pathogenesis of acute gastric mucosal damage, rats were treated intragastrically with 1.0 ml 96% ethanol with or without intravenous or intraperitoneal coadministration of VIP (1 nmol/liter to 1 mumol/liter/100 g). VIP was found to double the mean lesion area when compared with that induced by ethanol alone (P < 0.05), an effect that was prevented by VIP antagonist (1 mumol/liter/100 g). A substance P antagonist (1 mumol/liter/100 g) also reduced the extent of gastric damage induced by coadministration of VIP and ethanol. VIP antagonist or substance P antagonist significantly reduced ethanol-induced gastric mucosal damage. Gastric mucosal levels of LTB4, LTC4, VIP, and substance P were significantly increased in ethanol-treated rats as compared with saline-treated animals (P < 0.05). The augmentation of ethanol-induced damage by VIP was associated with increased gastric mucosal levels of LTB4. In VIP-treated rats, gastric mucosal levels of substance P were found to be significantly increased compared with control rats (P < 0.05). Administration of VIP to pyloric-ligated rats significantly increased gastric acid output and blood pepsinogen A levels as compared with saline treated rats (P < 0.05). Ketotifen, a mast cell stabilizer (100 micrograms/100 g), administered orally 30 min before damage induction by ethanol, with or without VIP, totally abolished the damage of the surface epithelium of the entire gastric mucosa and significantly reduced the mucosal levels of LTC4 and LTB4 (P < 0.05). It is suggested that VIP is involved in the pathogenesis of acute ethanol-induced gastric mucosal damage.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease

Ketotifen inhibits Clostridium difficile toxin A-induced enteritis in rat ileum.

BACKGROUND: Clostridium difficile toxin A is the principal mediator of inflammatory enterocolitis in experimental animals. The purpose of this study was to explore the effect of ketotifen, an anti-inflammatory drug, on toxin A-induced enterotoxicity in rat ileum. METHODS: The effects of intragastric administration of ketotifen on secretion, mannitol permeability, histological damage, and mucosal levels of leukotriene B4, leukotriene C4, and platelet activating factor in toxin A-exposed rat ileal loops were measured in vivo. The effects of ketotifen on toxin A-mediated release of rat mast cell protease II (rat mucosa mast cell product) release were also measured in rat ileal explants in vitro. The effect of ketotifen on neutrophil migration in vitro was also evaluated. RESULTS: Ketotifen pretreatment inhibited toxin A-associated intestinal secretion by 42.5% and mannitol permeability by 56.3% and reduced epithelial cell inflammation and necrosis. These effects were associated with reduced levels of leukotriene B4 by 65.8%, leukotriene C4 by 88.8%, platelet activating factor by 77.8%, and inhibition of rat mast cell protease II by 58.4%. In addition, pretreatment of neutrophils with ketotifen inhibited neutrophil migration in vitro. CONCLUSIONS: The protective effect of ketotifen in this animal model was associated with significant inhibition of release of mast cells and neutrophil derived mediators, supporting their involvement in C. difficile enteritis.

Animals

Peroxynitrite-induced rat colitis--a new model of colonic inflammation.

BACKGROUND: Excessive production of nitric oxide, characteristic of inflamed states, may have deleterious effects through its facile conversion (in the presence of O2) to peroxynitrite, which promotes lipid and sulfhydryl oxidation. This study assessed the effect of peroxynitrite on the rat colon. METHODS: Peroxynitrite was administered intrarectally to rats. One, 3, 7, and 21 days after treatment, a distal colonic segment was isolated and tissue was obtained for histological evaluation and determination of myeloperoxidase activity and NOX, and eicosanoids generation. RESULTS: Within 24 hours, the exposed segment was edematous and congested with occasional hemorrhagic mucosal ulceration. On day 7, the lumen was narrow; at day 21, there were signs of stenosis. Histological analysis showed transmucosal necrosis, acute inflammation, and exudative edema 24 hours after treatment. Surface re-epithelization and infiltration of granulation tissue were present at 1 week. Resolution of edema, mucin repletion, thickening of muscularis mucosa and propria, and fibrosis were observed at 3 weeks. Significant increase in NOX generation and myeloperoxidase and NO synthase activities were observed at 24 hours, whereas enhanced leukotriene generation was observed only at 21 days. CONCLUSIONS: Peroxynitrite-induced colonic inflammation provides a novel model of NO-related tissue injury and offers the opportunity to further explore the potential role of NO in the pathogenesis of inflammatory bowel disease.

Animals

Octreotide effectively decreases mucosal damage in experimental colitis.

The effect of octreotide, a synthetic analogue of somatostatin, on the modulation of the acetic acid model of experimental colitis was examined. Colitis was induced by intracolonic administration of 2 ml of 5% acetic acid. The inflammatory response elicited by the acetic acid resulted in increased colonic synthesis of platelet activating factor, leukotriene B4 and decreased mucosal somatostatin levels. Subcutaneous administration of octreotide (10 micrograms/rat) 1 hour before or immediately after damage induction, as well as 1 and 23 hours after acetic acid application, resulted in a significant reduction in mucosal damage. The protective effect was accompanied by a significant reduction in platelet activating factor activity, leukotriene B4, and vasoactive intestinal peptide concentrations. There were no significant changes in mucosal leukotriene C4 and calcitonin gene related peptide levels. This study shows that acetic acid induced colitis is pharmacologically manipulated by octreotide. The mechanism of action of octreotide has not yet been fully determined. The potential use of octreotide in treating active inflammatory bowel disease remains to be evaluated.

Acetates

Intestinal epithelial cells contribute to the enhanced generation of platelet activating factor in ulcerative colitis.

Generation of platelet activating factor by intestinal mucosal epithelial cells and lamina propria mononuclear cells was evaluated to elucidate the possible role of this mediator in the pathogenesis of inflammatory bowel disease. Epithelial and lamina propria mononuclear cells were isolated from surgical specimens from control, Crohn's disease, and ulcerative colitis patients. Platelet activating factor was extracted from highly purified cell preparations with 80% ethanol after stimulation with and without 0.2 uM calcium ionophore A23187 and was measured by platelet aggregation assay. Both cell types generated platelet activating factor activity and this was generally comparable for epithelial and lamina propria cells. Basal and stimulated platelet activating factor activity of epithelial and lamina propria cells from ulcerative colitis but not Crohn's disease patients was appreciably higher than that of control. Stimulation with calcium ionophore increased appreciably platelet activating factor activity in lamina propria cells from all groups. In contrast, only epithelial cells from ulcerative colitis showed an appreciable increase after calcium ionophore induction. These results suggest that epithelial cells are important contributors to intestinal platelet activating factor generation under normal and inflammatory conditions and that epithelial cells actively play a part in the pathogenesis of ulcerative colitis.

Adolescent

Substance P levels in the rectal mucosa of diabetic patients with normal bowel function and constipation.

Substance-P content in rectal mucosa was determined by radioimmunoassay in 28 diabetic patients (17 with severe chronic constipation and 11 with normal bowel function), 24 non-diabetic patients with severe functional constipation, and 27 normal controls. Substance-P content (pg/mg) in the rectal mucosa of diabetics with normal bowel function was significantly higher than that of non-diabetic controls (p < 0.001). Substance-P content in the rectal mucosa of diabetics with constipation was more than double that of patients with non-diabetic functional constipation (p < 0.01) and lower than that of diabetics with normal bowel function (p < 0.0375). Diabetic patients (constipated and non-constipated) have higher substance-P content in the rectal mucosa than non-diabetics. Lower substance-P rectal mucosa content in constipated diabetic patients than in non-constipated diabetics supports a possible role of substance P in the pathogenesis of diabetic constipation.

Adult

Ketotifen--old drug, new indication: reduction of gastric mucosal injury.

The objective of the present study was to determine the efficacy of ketotifen (Zaditen), an effective antiasthmatic drug, in preventing indomethacin-induced gastroduodenal mucosal injury in a two-arm prospective, randomized, double-blind, controlled and open study. Thirty healthy volunteers with endoscopic normal-appearing mucosa were randomly treated, double-blindly, for 1 week with either placebo or ketotifen, 2 mg twice daily. On day 7 indomethacin, 50 mg three times daily, was added. Two subjects, one from each group, were withdrawn from the study owing to non-compliance. Ten additional subjects received ketotifen, 2 mg twice daily, 24 h before indomethacin administration, in an open manner. A second endoscopy was performed 24 h after indomethacin was initiated. Mucosal damage in the stomach and duodenum (hemorrhages, erosions, ulcers) was scored in accordance with Lanza et al. or counted numerically. Adverse reactions were documented. Ketotifen reduced indomethacin-induced gastric mucosal damage, reducing the mean gastric lesion score from 2.85 +/- 0.20 in the placebo-treated group to 1.86 +/- 0.36 and in the subjects pretreated with ketotifen for 7 days. Ketotifen protected (lesion score < or = 1) 6 of 14 subjects pretreated for 7 days, whereas none of the 14 placebo-treated subjects were protected. Ketotifen had no statistically significant protective effects in the duodenum. In the open study lesion scores of patients pretreated with ketotifen for 24 h were similar to those pretreated for 7 days. Ketotifen is effective in the reduction of indomethacin-induced acute gastric mucosal injury. Further studies are required to verify these data in a more relevant clinical setting.

Adult

Ketotifen effectively prevents mucosal damage in experimental colitis.

The effects of ketotifen, a 'mast cell stabiliser,' on two models of experimental colitis were examined. The inflammatory response elicited by either trinitrobenzene sulphonic acid or acetic acid resulted in increased colonic synthesis of platelet activating factor, prostaglandin E2, thromboxane B2, leukotrienes B4 and C4, and myeloperoxidase activity. Intragastric administration of ketotifen 100 micrograms/100 grams twice daily significantly decreased mucosal damage when given prophylactically 48 hours before the induction of colitis and then throughout the experiment. This effect was consistent in both models and was accompanied by a significant reduction in mucosal generation of platelet activating factor, prostaglandin E2, thromboxane B2, and leukotrienes C4 and B4. Myeloperoxidase activity was reduced as well, reaching significance only in the acetic acid model. This study shows that both trinitrobenzene sulphonic acid and acetic acid colitis can be pharmacologically manipulated by ketotifen. The mechanism of action of ketotifen has not yet been determined. Ketotifen's potential in the treatment of active inflammatory bowel disease or in the prevention of exacertations, or both, remains to be elucidated.

Acetates

Effect of aminophenols (5-ASA and 4-ASA) on colonic interleukin-1 generation.

The effect of 5-ASA and 4-ASA, drugs used for the treatment of inflammatory bowel disease, on modulation of experimental colitis and on colonic generation of interleukin-1 was evaluated. Three weeks of treatment with 5-ASA or 4-ASA (50 micrograms/kg) and one week of treatment with 5-ASA significantly decreased colonic interleukin-1 generation and the extent and severity of inflammation in a rat model of colitis induced by trinitrobenzene sulphonic acid. Colonic biopsies were obtained from patients with active ulcerative colitis and organ cultured 24 hours in the absence or presence of the following drugs: sulphasalazine, sulphapyridine, 5-ASA and 4-ASA (25-100 micrograms/ml). Interleukin-1 content in tissue cultured in the presence of 5-ASA (100 micrograms/ml) was two-thirds of its content in tissue cultured in drug free medium and its release into the medium was decreased by 50%. Sulphasalazine 50 micrograms/ml significantly decreased by 33% the tissue content but did not affect interleukin-1 release and a higher dose was not more effective. Sulphapyridine and 4-ASA in doses up to 100 micrograms/ml did not affect either interleukin-1 colonic content or its release into the culture medium. We conclude that pharmacological suppression of colonic interleukin-1 generation may be one, although not the sole mechanism to explain the therapeutic efficacy of 5-ASA in the treatment of inflammatory bowel disease.

Aminosalicylic Acid

Effect of drugs on colonic eicosanoid accumulation in active ulcerative colitis.

The effect of immunosuppressive drugs, 4-aminosalicylic acid (4-ASA), acetyl 5-aminosalicylic acid (5-ASA), and ketotifen on human colonic eicosanoid accumulation was evaluated in view of enhanced accumulation in patients with active ulcerative colitis. Azathioprine (100 micrograms/ml), cyclosporin (100 micrograms/ml), and methotrexate (100 micrograms/ml) significantly inhibited, by 25-35%, prostaglandin E2 (PGE2) accumulation by organ-cultured colonic mucosa of ulcerative colitis patients. Methotrexate was the only immunosuppressive drug that inhibited leukotriene B4 (LTB4) accumulation (50%), whereas azathioprine inhibited the accumulation of leukotriene C4 (LTC4) (25%). 5-ASA and its metabolite, acetyl 5-ASA, inhibited by 20-70% PGE2, LTB4, and LTC4 accumulation in the culture, supporting the contention that acetyl 5-ASA is as active as 5-ASA in these respects. 4-ASA had no effect on any of the eicosanoids. Ketotifen, a mast cell stabilizer, significantly inhibited the accumulation of PGE2, LTB4, and LTC4 by 33-60%. These results suggest a potential, new, unrecognized mode by which the immunomodulators induce part of their therapeutic effects in inflammatory bowel disease and support the contention that acetyl 5-ASA is as active as 5-ASA. The results obtained also indicate that ketotifen, used effectively in the prevention of bronchial asthma, inhibits the accumulation of colonic eicosanoids and, thus, may be of value in the treatment of inflammatory bowel disease.

Adult

Effect of duodenal ulcer healing induced by omeprazole and ranitidine on the generation of gastroduodenal eicosanoids, platelet-activating factor, pepsinogen A, and gastrin in duodenal ulcer patients.

The effect of duodenal ulcer healing induced by omeprazole on gastroduodenal generation of eicosanoids, platelet-activating factor (PAF), pepsinogen A, and gastrin was evaluated. Sixty patients with endoscopically proven duodenal ulcer were randomized to receive 20 mg omperazole once daily or 300 mg ranitidine at bedtime for 2 weeks. Patients whose ulcers did not heal were treated for an additional 2 weeks. Endoscopic biopsy specimens and serum samples were obtained before and after treatment. There was no significant difference in the healing rate between the two treatment modalities. At 2 weeks healing rates were 60% and 56% in the omperazole and ranitidine groups, respectively, whereas at 4 weeks the respective healing rates were 96% and 86%. Ulcer healing induced by omeprazole and ranitidine was not accompanied by significant changes in mucosal leukotriene B4 or C4 generation. Mucosal PAF significantly decreased in patients treated with omeprazole for 4 weeks. In omperazole-treated patients there was a trend towards increase in mucosal prostaglandin E2 generation which was significant in the fundus after 4 weeks of treatment. After 2 weeks of omeprazole treatment, serum gastrin and pepsinogen A levels almost doubled when compared with their pretreatment levels. In conclusion, duodenal ulcer healing with 20 mg omeprazole daily is not superior to healing rates with 300 mg ranitidine at bedtime after both 2 and 4 weeks of treatment. In omeprazole-treated subjects ulcer healing was accompanied by a significant decrease in mucosal PAF generation and increased levels of serum gastrin and pepsinogen A.

Adolescent