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Protection against gastrointestinal diseases--present facts and future developments.

The importance of the intestinal microflora and, more specifically its composition, in physiological and pathophysiological processes in the human GIT is becoming more evident. Examples of such processes are translocation, the production and resorption of endotoxins, immune-modulation, and colonic motility. This leads to new possibilities for prevention and therapy of diseases, mainly of the gastrointestinal organs. New discoveries are specifically related to the beneficial effects of lactobacilli which have been discussed for decades. It is possible to increase the proportion of lactobacilli in the gastrointestinal microflora by consumption of fermented dairy products or by oral administration of specific non-digestible substrates such as oligofructose. Results from clinical trials and scientific studies have confirmed the preventive and therapeutic effects of selected strains of lactobacilli in viral- and bacterial-induced intestinal infections, in positively influencing immunological parameters, in normalizing the intestinal motility, and in inhibiting metabolic events in the gut lumen which promote colonic carcinogenesis. Nevertheless, there are still unresolved issues which can only be answered by well designed and well controlled clinical trials.

Bifidobacterium↗

Neurologic dysfunction in gastrointestinal disease.

The various disease processes described in this review by no means exhaust the list of GI diseases in which neurologic dysfunction may occur, but merely serve as a representative sampling. Recognition is often a function of awareness, and the growing knowledge of the rich interaction between GI and neurologic systems on many levels suggests that additional associations will be uncovered in the future.

Acute Disease↗

Environment as a critical factor for the pathogenesis and outcome of gastrointestinal disease: experimental and human inflammatory bowel disease and helicobacter-induced gastritis.

Environmental factors play an important role in the manifestation, course, and prognosis of diseases of the gastrointestinal tract such as inflammatory bowel disease (IBD) and Helicobacter pylori-induced gastritis. These two disease complexes were chosen for a discussion of the contribution of environmental factors to the disease outcome in humans and animal models. Dissecting complex diseases like IBD and Helicobacter-induced gastritis has shown that the outcome of disease depends on the allelic constellation of a host and the microbial and physical environments. Host alleles predisposing to a disease in one genomic and/or environmental milieu may not be deleterious in other constellations; on the other hand, microbes can have different effects in different hosts and under different environmental conditions. The impact of the complex interaction between host genetics and environmental factors, particularly microflora, also underlines the importance of a defined genetic background and defined environments in animal studies and is indicative of the difficulties in analyzing complex diseases in humans.

Animals↗