Para-aminosalicylic acid-resin complex: studies in absorption, serum electrolytes, and tolerance.
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BACKGROUND: A comparative study was performed between patients with exocrine pancreatic insufficiency after conventional pancreatoduodenectomy (Whipple's procedure) and pylorus-preserving pancreatoduodenectomy (PPPD). In these patients the pharmacodynamics of 2-mm enteric-coated pancreatin microspheres (ECPMs) and their gastric transit time in relation to that of a solid meal were investigated. The efficacy of ECPM preparations may differ after Whipple's procedure compared with PPPD, because the latter procedure does not include gastrectomy. METHODS: Gastric transit was assessed by double-isotope scintigraphy. A pancake meal was labelled with 99mTc. ECPMs were cold-labelled with 170Er and neutron activated shortly before ingestion to enable imaging with a gamma camera. Intraluminal pancreatic enzyme activity was assessed during a 6-h period with two indirect tests: the cholesteryl [14C]octanoate breath test and the N-benzoyl-L-tyrosyl-p-aminobenzoic acid-p-aminosalicylic acid (NBT-PABA-PAS) test. RESULTS: In patients who had Whipple's procedure, the gastric transit time of ECPMs and of the pancake meal was not significantly different. The outcome of the indirect pancreatic function tests during enzyme supplementation was comparable, and not significantly different, from that in healthy volunteers. In patients who had PPPD, however, the gastric transit time of microspheres was greatly delayed compared with that of the pancake meal (P < 0.05). Improvement in the outcome of the indirect pancreatic function tests during enzyme supplementation was much less and remained well below that of healthy volunteers (P < 0.05). CONCLUSION: In cases of exocrine pancreatic insufficiency after Whipple's procedure, 2-mm ECPM treatment adequately restores pancreatic enzyme activity. Following PPPD, however, ECPM treatment is often ineffective because the microspheres are retained in the stomach. In these patients, use of conventional powdered pancreatin enzyme preparations may improve the efficacy of treatment.
The tuberculostatic drug rifampicin has been described as a scavenger of reactive species. Additionally, the recent demonstration that oral therapy with a complex of rifampicin and horseradish peroxidase (HRP) was more effective than rifampicin alone, in an animal model of experimental leprosy, suggested the importance of redox reactions involving rifampicin and their relevance to the mechanism of action. Hence, we studied the oxidation of rifampicin catalyzed by HRP, since this enzyme may represent the prototype of peroxidation-mediated reactions. We found that the antibiotic is efficiently oxidized and that rifampicin-quinone is the product, in a reaction dependent on both HRP and hydrogen peroxide. The steady-state kinetic constants Km(app) (101+/-23 micromol/l), Vmax(app) (0.78+/-0.09 micromol/l.s(-1)) and kcat (5.1+/-0.6 s(-1)) were measured (n=4). The reaction rate was increased by the addition of co-substrates such as tetramethylbenzidine, salicylic acid, 5-aminosalicylic acid and paracetamol. This effect was explained by invoking an electron-transfer mechanism by which these drugs acted as mediators of rifampicin oxidation. We suggested that this drug interaction might be important at the inflammatory site.
In this paper, the separation and determination conditions of zinc 5-aminosalicylate (ZASA) and related compounds by high performance liquid chromatography(HPLC) have been studied systematically. The baseline separation was achieved at 20 degrees C on a CLC-ODS column(150 mm x 6.0 mm i.d., 10 microns) within 10 minutes by using 1% (V/V) HAc-MeOH(4:6) as mobile phase at a flow-rate of 1 mL/min. The RSDs of rention time within day and between days were less than 2% and 5% respectively. The injection volume was 20 microL, and relationships between the peak area with 280 nm detection and the analyte concentration were linear within certain ranges. This method was used for determination of ZASA, impurities and thermal decomposition compounds. The results showed that the impurities in the crude ZASA were 5-aminosalicylic acid and salicylic acid. The thermal decomposition compounds in acid medium were 5-aminosalicylic acid, 5-aminophenol and 5-benzeneazosalicylic acid.
The in vitro antimycobacterial activities of sulfasalazine and its split products, mesalazine (5-aminosalicylic acid) and sulfapyridine, against 170 mycobacterial strains belonging to 17 species were compared with those of diaminodiphenylsulfone, sulfadimethoxine, olsalazine, and para-aminosalicyclic acid. Only para-aminosalicylic acid showed consistent activity against Mycobacterium tuberculosis. These data suggest that the principle of activity of sulfasalazine in Crohn's disease is not an antimycobacterial effect.
Ulcerative colitis and Crohn's disease are chronic inflammatory bowel diseases. The most widely prescribed drug for treatment of these diseases, sulfasalazine, has been shown to inhibit the activity of free radicals, as the active moiety of sulfasalazine, 5-aminosalicylic acid, is a radical scavenger. This effect of 5-aminosalicylic acid may be of clinical relevance, as a recent study has shown that 5-aminosalicylic acid reacts with oxygen-derived free radicals formed in the intestine in this disease. Reaction with free radicals does not, however, occur in patients with rheumatoid arthritis treated with the same agent. Furthermore, a significant correlation exists between the activity in the intestine of free radicals, as measured by the rate of lipid peroxidation, and the disease activity.
OBJECTIVE: To investigate whether treatment of inflammatory bowel disease (IBD) with 5-aminosalicylate or sulphasalazine in IBD may induce renal tubular damage. DESIGN AND METHODS: The urinary enzymes beta-N-acetyl-D-glucosaminidase ( beta-NAG), dipeptidylpeptidase 4 (DPP4) and alanine aminopeptidase (AAP) were measured as markers of renal tubular damage in 104 consecutive patients with Crohn's disease and in 43 consecutive patients with ulcerative colitis (all with normal serum creatinine values). Control values were gained from 65 healthy persons. RESULTS: The normal values (mean +/- SD) for the urinary enzymes investigated (U/g creatinine in the urine) were: DPP4 4.5 +/- 2.2, beta-NAG 1.6 +/- 1.4, AAP 11.4 +/- 6.5. In 28% of the patients with ulcerative colitis elevated beta-NAG levels of more than the mean + 2 x SD were measured. This pathological enzymuria was nearly exclusively found in patients with active disease (CAI > 6): DPP4 15.6 +/- 25.3, beta-NAG 8.3 +/- 10.1, AAP 24.7 +/- 50.1 (all three enzymes were significantly elevated). The highest values were measured in patients with active ulcerative colitis before start of therapy. Nineteen per cent of the patients with Crohn's disease had elevated beta-NAG levels of more than the mean + 2 x SD. There was no significant difference in enzymuria between patients with active (CDAI > 150) and patients with inactive Crohn's disease (CDAI < or = 150). DPP4 and AAP were normal in both groups. A correlation between the enzymuria and the cumulative doses of 5-aminosalicylic acid, sulphasalazine or prednisolone could not be found. The courses of enzymuria in three patients who presented with the first severe manifestation of IBD are described. They were treated with either corticosteroids and 5-aminosalicylic acid or corticosteroids and sulphasalazine. Before onset of therapy, very high urine enzyme values were measured. They almost normalized in the course of successful medical therapy despite increasing cumulative doses of 5-aminosalicylic acid or sulphasalazine. CONCLUSIONS: Renal tubular damage can frequently be observed in IBD. Our results suggest that this is an extraintestinal manifestation of the disease and not a toxic side-effect of anti-inflammatory therapy using 5-aminosalicylic acid or sulphasalazine.
The quantitative aspects of the disposition in man of 12 antituberculosis drugs [isoniazid, rifampicin, (rifampin), ethambutol, para-aminosalicylic acid, pyrazinamide, streptomycin, kanamycin, ethionamide, cycloserine, capreomycin, viomycin and thiacetazone] are reviewed. Isoniazid appears to be the only agent for which plasma concentrations and clearance are related to hereditary differences in acetylator status and for which there is an appreciable 'first-pass' effect. Recent data cast doubt on the suggestion that isoniazid may be more hepatotoxic for rapid as opposed to slow acetylators. Continuous administration of rifampicin leads to induction of enzymes in the liver with a concomitant decrease in maximum plasma concentrations, the time required to achieve this level, elimination half-life, and area under the plasma concentration-time curve (AUC). Coadministration of para-aminosalicylic acid leads to increases in the serum concentrations and elimination half-life of isoniazid. With a few exceptions, the metabolites of the antituberculosis drugs are devoid of antimicrobial activity; the exceptions are 25-desacetylrifampicin which accounts for approximately 80% of the drug's antimicrobial activity in human bile, the acetylated and glycylated metabolites of para-aminosalicylic acid, and the sulphoxide metabolites of ethionamide. The effect of renal impairment is relatively unimportant for the excretion of isoniazid, rifampicin and para-aminosalicylic acid, but the elimination half-life of streptomycin increases to 100 hours when the blood urea nitrogen level is greater than 100mg/100ml, and ototoxicity is strikingly more frequent. In states of malnutrition, such as kwashiorkor, the protein binding of para-aminosalicylic acid decreases from 15% to essentially zero and in the case of ethionamide and streptomycin binding decreases by 6% and 16% respectively. Of the data concerning age-related effects, most notable are the prolonged elimination half-life of isoniazid in neonates (up to 19.8 hours), and the lower peak serum concentrations of rifampicin in children of one-third to one-tenth those of adults following a similar dose on a weight basis. For kanamycin, the maximum plasma concentration varies inversely with age but is not influenced by birthweight; however, the clearance is directly dependent upon birthweight and postnatal age. For the elderly, age is an insignificant factor for the elimination of isoniazid when compared with young adults of similar acetylator status, and the metabolism of rifampicin may be considered globally unaltered in this age group.(ABSTRACT TRUNCATED AT 400 WORDS)
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Amtolmetin guacyl (MED15) is a new non-steroidal anti-inflammatory drug (NSAID) which shares anti-inflammatory, analgesic and antipyretic activity with the other drugs of the NSAID family but which shows, unexpectedly, strong gastroprotective activity similar to misoprostol. This effect has been attributed to the presence in its molecule of a vanillic moiety responsible for stimulation of capsaicin receptors present throughout the length of the gastrointestinal tract. MED15 shows antispasmodic activity in the bowel against a number of agonists and compares favourably with reference compounds. In in vivo indomethacin-induced rat ileitis, MED15 heals better than 5-aminosalicylic acid and sulfasalazine, as well as down-regulating intestinal wall myeloperoxidase content. In acetic acid-induced colitis in the rat, levels of malondialdehyde were found to be more markedly reduced with MED15 than with 5-aminosalicylic acid. In contrast with the effect in the stomach, MED15 protective effect in the bowel appears to be unrelated to nitric oxide (NO) production. The MED15 enteroprotective effect is related to stimulation of intestinal capsaicin receptors as demonstrated by the loss of protective effect in the presence of capsazepine, a specific receptor antagonist of capsaicin. In conclusion, following the favourable results obtained in animal models and notwithstanding the pharmacological effects typical of an NSAID, MED15 may rationally be proposed for the treatment of various human colitis conditions and Crohn's disease.
This article reviews the clinical pharmacology, adverse events, and comparative tolerability of the drugs commonly available for treating ulcerative colitis. Synthetic glucocorticoids are the most commonly used conventional corticosteroids in the treatment of ulcerative colitis. Corticosteroids can be expected to impact on every organ system and most metabolic activities of the body. Suppression of the hypothalamic-pituitary-adrenal axis is common, but reversible, with conventional corticosteroids, but not with newer topically-acting corticosteroids. A serious complication of corticosteroids in children is growth retardation. The frequent adverse effects associated with the use of corticosteroids have prompted the development of a new group of rectal agents with equivalent efficacy and a more benign adverse event profile such as prednisolone metasulfobenzoate, fluticasone propionate, tixocortol pivalate, beclomethasone dipropionate and budesonide. The incidence of adverse effects related to the use of sulfasalazine (5-aminosalicylic acid plus sulfapyridine) is high and is dose related. The most frequently reported adverse effect is intolerance, not allergy, and relates to the sulfapyridine moiety correlating with the acetylator phenotype. Tolerance to 5-aminosalicylic acid by 80 to 90% of those patients allergic to, or intolerant of, sulfasalazine has given further evidence suggesting that the sulfa moiety is responsible for much of the toxicity of sulfasalazine. However, 10 to 20% of patients who are sulfasalazine intolerant have similar reactions to 5-aminosalicylic acid formulations, indicating that the 5-aminosalicylic acid moiety is responsible for adverse events in some patients taking sulfasalazine. Adverse effects resulting from treatment with azathioprine and mercaptopurine can be divided into two categories: allergic-type reactions that appear to be dose-independent and nonallergic-type reactions that are probably dose- and metabolism-dependent. It is well established now that genotype and thiopurine methyltransferase activity have an important impact on the rate of adverse effects during azathioprine or mercaptopurine therapy. Adverse effects resulting from high dose cyclosporin therapy for inflammatory bowel disease include: renal insufficiency, hypertension, opportunistic infections, seizures, paresthesias, tremor, headache, gingival hyperplasia, hypertrichosis, and anaphylaxis with intravenous cyclosporin. In contrast, the incidence of adverse events was relatively low when low-dose oral cyclosporin was used. The incidence of adverse events associated with any of the medications used in the treatment of ulcerative colitis is difficult to assess and it is therefore hard to make a comparative evaluation. The broadening of the drug regimen available to the clinician has advanced our knowledge about the disease, and further development of more effective, less toxic agents can be anticipated in the future.
Sulphasalazine consists of 5-aminosalicylic acid and sulphapyridine both linked together by an azo bond. Sulphasalazine is clearly useful in long-term management of ulcerative colitis and may be useful in Crohn's disease. The absorption, metabolism and excretion of sulphasalazine is similar in volunteers and patients with ulcerative colitis or Crohn's disease. Sulphasalazine serves as a vehicle to deliver its possible active components, 5-aminosalicylic acid and sulphapyridine, to the colon in higher concentrations than could be achieved by oral administration of either one alone. Sulphasalazine reaches the colon mostly unchanged and is split by gut bacteria at the azo linkage, releasing 5-aminosalicylic acid and sulphapyridine. 5-Aminosalicylic acid may act locally and is not absorbed to any great extent. On the contrary, sulphapyridine is mostly absorpbed from the colon and may act both locally, during mucosal absorption, and systemically. A positive correlation exists between serum total sulphapyridine concentration and both therapeutic efficacy and toxicity. Sulphapyridine metabolism is largely determined by inherited acetylator phenotype, either slow or fast. Slow acetylators have higher levels of free sulphapyridine and lower levels of acetylated sulphapyridine than fast acetylators, and are likely to have more toxic symptoms on equivalent doses of sulphasalazine. Therapeutic effects of sulphasalazine in ulcerative colitis and Crohn's disease correlate with serum concentrations of total sulphapyridine (20 to 50 microng/ml), and toxicity with total sulphapyridine concentration greater than 50 microng/ml. Side-effects are mostly observed among slow acetylators. In long-term therapy of ulcerative colitis doses of 2 to 3g/day of sulphasalazine are most likely to sustain remissions and avoid toxicity. During therapy with sulphasalazine, determination of acetylator phenotype and total sulphapyridine concentration can guide effective dosage and avoid side-effects. A single serum sample for free and acetylated sulphapyridine concentrations is sufficient for this purpose.
BACKGROUND: Drug therapy for Crohn's disease and ulcerative colitis is based on anti-inflammatory and immunodulating drugs, nutritional support and surgical resection. Recently, new drugs have been introduced. AIM: To report drug prescriptions, costs and adverse reactions among inflammatory bowel disease patients in Sweden between 1988 and 1997. METHODS: Drug use was calculated from the national Diagnosis and therapy survey and drug costs from prescriptions and drug sales. Adverse drug reactions were obtained from the Medical Products Agency's National Pharmacovigilance system. RESULTS: The annual drug exposure for Crohn's disease was 0.55 million daily doses per million population, mainly supplementation and aminosalicylic acids. Mesalazine and olsalazine had 61% within this group. For ulcerative colitis patients, drug exposure was 0.61 million daily doses per million per year and aminosalicylic acids fell from 70% to 65%. For inflammatory bowel disease patients, corticosteroids and nutritional supplementation were common. The annual average cost for inflammatory bowel disease drugs was 7.0 million US dollars. Annually, 32 adverse drug reactions were reported, mainly haematological reactions such as agranulocytosis and pancytopenia (60%), followed by skin reactions. Only two deaths were reported. Aminosalicylic acids were the most commonly reported compounds. CONCLUSIONS: Drug use for inflammatory bowel disease in the pre-biologic agent era rested on aminosalicylic acid drugs and corticosteroids with stable levels, proportions and costs. The level of adverse drug reactions was low but haematological reactions support the monitoring of inflammatory bowel disease patients.
An increased incidence of colonic cancer is associated with chronic inflammatory bowel disease. Sulphasalazine, metronidazole and more recently, modified forms of 5-aminosalicylic acid are used for maintenance therapy of inflammatory bowel disease. In a series of experiments, we used the 1,2-dimethylhydrazine animal model of colonic cancer in conjunction with these drugs, to study the effect on the development of colon cancer. Inbred male Wistar rats were divided into groups receiving orally: metronidazole 18 mg Kg-1 dy-1; sulphasalazine 60 mg Kg-1 dy-1; 5-aminosalicylic acid 30 and 60 mg Kg-1 dy-1 and olsalazine 60 mg Kg-1 dy-1 administered daily. Half of each group also received weekly injections of DMH 40 mg Kg-1. Metronidazole, sulphasalazine and 30 mg Kg-1 dy-1 5-aminosalicylic acid were co-carcinogenic, increasing either the number of cancers or tumour size. In contrast 60 mg Kg-1 dy-1 5-aminosalicylic acid inhibited tumour size and olsalazine had no effect. These results may have a bearing on long term maintenance therapy in inflammatory bowel disease.
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OBJECTIVE: To examine the effects of ropivacaine, currently being investigated for treatment of ulcerative colitis, on the release of arachidonic acid metabolites. MATERIAL: Human granulocytes and endothelial cells. TREATMENT: Ropivacaine, lidocaine, hydrocortisone, 5-aminosalicylic acid or acetylsalicylic acid (10-1000 microM). METHODS: Leukotriene B4, 5-hydroxyeicosatetraenoic acid, 6-keto PGF1 alpha and 15-hydroxyeicosatetraenoic acid were measured using immuno assays. Wilcoxon signed rank test was used for statistical calculations. RESULTS: Ropivacaine dose-dependently inhibited zymosan-induced release of leukotriene B4 and 5-hydroxyeicosatetraenoic acid whereas the release after ionophore stimulation was not affected. Ropivacaine was more potent than 5-aminosalicylic acid but less potent compared to hydrocortisone. Ropivacaine had only a weak inhibitory effect on the release of 15-hydroxyeicosatetraenoic acid from zymosan- or ionophore-stimulated cells. In contrast to hydrocortisone and 5-aminosalicylic acid, ropivacaine only weakly affected the release of 6-keto PGF1 alpha after stimulation with thrombin. CONCLUSIONS: The inhibited release of 5-lipoxygenase products may account for some of the anti-inflammatory effects of ropivacaine seen in the treatment of ulcerative colitis.
Most of the procedures currently performed by capillary zone electrophoresis (CZE) with laser induced fluorescence detection requires prior derivatization. This increases cost, the turn-around-time and chances of extraneous contaminations. CZE with laser induced resonance energy transfer is demonstrated as a viable alternative for detecting non-fluorescent compounds with no prior derivatization. The feasibility of this approach is demonstrated by separating and directly detecting salicylic acid (2,4-dihydroxybenzoic acid), gentisic acid (o-methoxybenzoic acid), salicyluric acid (o-hydroxyhippuric acid) and 4-aminosalicylic acid in urine. The detection of salicylate in serum is also shown. The method is highly sensitive with detection limits in the 1.10(-7) M range. Importantly it requires no prior preconcentration or sample preparation and can be used with complex sample matrices such as serum and urine.
While surgery for Crohn's disease is usually effective initially, its long-term benefits may be diminished by the risk of recurrent disease. In our studies, we have observed symptomatic recurrence rates of 47% and endoscopic recurrence rates of 75% at 3 years. As a result, there has been considerable interest in strategies aimed at decreasing recurrence. Unfortunately, surgical manoeuvers have had little effect on recurrence rates. There are conflicting data on the effect of resection margin length and microscopic disease at the resection margin, probably due to the fact that most data are derived from retrospective studies. Differences in anastomotic technique also appear to have little effect on the recurrence rate. On the other hand, there are now data from two randomized controlled trials supporting the use of 5-aminosalicylic acid postoperatively. In a study performed at the University of Toronto and Mayo Clinic, of 163 patients who were randomized to 5-aminosalicylic acid (Salofalk) 3.0 g/day or placebo, the relative risk of a symptomatic recurrence was 0.628 in the treatment group compared to those in the control group. For compliant patients, the risk reduction was even greater with a RR of 0.532. A similar reduction in the endoscopic recurrence rate was observed. Caprilli and colleagues reported similar results in patients receiving 2.4 g Asacol per day. Postoperative recurrence is a significant problem but is significantly reduced by the prophylactic use of 5-aminosalicylic acid.