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[Mercuric chloride-induced enteropathy in the rat: a model of gastrointestinal disease with immunologic pathogenesis].

Protein-loss into the gastrointestinal tract is a feature of many different diseases, a number of which are immunologically mediated, e.g. systemic lupus erythematosus or Crohn's disease. The pathogenic mechanism of protein-losing enteropathy in diseases without obvious enterocyte injury are unknown. Brown-Norway-rats (BN-rats) were gavaged with low doses of HgCl2 for 39 weeks. Within 2 weeks, the intestines showed strong linear staining for IgG and IgA along vascular and intestinal basement membranes. Granular deposits containing IgG and C3 were present along intestinal basement membrane only in the late stages of the experiment; only in these animals increased intestinal protein loss as measured by fecal Cr-51 excretion was found. These findings suggest that immune complex deposition along the intestinal basement membrane can lead to protein-losing enteropathy. This disease may be used as a model for the study of immunologically mediated intestinal disease.

Animals↗

[NSAID-induced gastrointestinal diseases: recent data on pathogenesis and prevention].

Our knowledge of the mechanism by which aspirin and traditional NSAIDs work and damage the gastrointestinal mucosa, recently markedly improved, has suggested a number of measures for the prevention of the NSAID-induced GI lesions. Among these, perhaps the most innovative approach seems to be the nitric oxide-releasing NSAIDs or compounds, like amtolmetin guacyl, that work by increasing the endogenous biosynthesis of NO selectively at gastric mucosa level. Further data, stemming from large RCTs and confirming the results of experimental studies and the initial clinical experiences, are needed to better define the true clinical impact of this approach.

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