Functional food science and gastrointestinal physiology and function

Наука о функциональных пищевых продуктах, физиология и функции желудочно-кишечного тракта
Seppo Salminen, C. Bouley, M C Boutron, J.H. Cummings, A. Franck, Glenn R. Gibson, Erika Isolauri, Marie-Christiane Moreau, Marcel Roberfroid, Ian Rowland
1998-08-01

functional foodsgastrointestinal physiologyintestinal microfloraprebioticsprobiotics
The gut is an obvious target for the development of functional foods, acting as it does as the interface between diet and the metabolic events which sustain life. The key processes in digestive physiology which can be regulated by modifying diet are satiety, the rate and extent of macronutrient breakdown and absorption from the small bowel, sterol metabolism, the colonic microflora, fermentation, mucosal function and bowel habit, and the gut immune system. The intestinal microflora is the main focus of many current functional foods. Probiotics are foods which contain live bacteria which are beneficial to health whilst prebiotics, such as certain non-digestible oligosaccharides which selectively stimulate the growth of bifidobacteria in the colon, are already on the market. Their claimed benefits are to alleviate lactose maldigestion, increase resistance to invasion by pathogenic species of bacteria in the gut, stimulate the immune system and possibly protect against cancer. There are very few reports of well-designed human intervention studies with prebiotics as yet. Certain probiotic species have been shown to shorten the duration of rotavirus diarrhoea in children but much more work is needed on the mechanism of immunomodulation and of competitive exclusion and microflora modification. The development of functional foods for the gut is in its infancy and will be successful only if more fundamental research is done on digestive physiology, the gut microflora, immune system and mucosal function.
1
Certain probiotic species shorten rotavirus diarrhoea duration in children, while proposed benefits such as immune stimulation and pathogen exclusion require further mechanistic evidence.
2
Dietary modification can regulate satiety, macronutrient digestion and absorption, sterol metabolism, colonic microflora, fermentation, mucosal function, bowel habit, and gut immunity.
3
Functional food development for gastrointestinal health remains preliminary and requires more fundamental research and well-designed human intervention studies, particularly for prebiotics.
4
Probiotics and prebiotics are prominent gut-focused functional foods; prebiotics selectively stimulate colonic bifidobacteria and are already commercially available.
5
The gut is a major target for functional foods because it links dietary intake with metabolic processes sustaining health.

the gastrointestinal tract and its associated intestinal microflora

the regulation of gastrointestinal digestive, microbial, mucosal, immune, and bowel functions by functional foods, including probiotics and prebiotics

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1998-08-01
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Authors
Seppo Salminen
C. Bouley
M C Boutron
J.H. Cummings
A. Franck
Glenn R. Gibson
Erika Isolauri
Marie-Christiane Moreau
Marcel Roberfroid
Ian Rowland
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