Scinovex
review Open AccessTop 1% cited

Intestinal microbiota, diet and health

British Journal Of Nutrition · 2013 · Vol. 111(3) · pp. 387–402
Susan PowerPaul W. O’TooleCatherine StantonR. Paul RossGerald F. Fitzgerald

Abstract

The human intestine is colonised by 10¹³ to 10¹⁴ micro-organisms, the vast majority of which belong to the phyla Firmicutes and Bacteroidetes. Although highly stable over time, the composition and activities of the microbiota may be influenced by a number of factors including age, diet and antibiotic treatment. Although perturbations in the composition or functions of the microbiota are linked to inflammatory and metabolic disorders (e.g. inflammatory bowel diseases, irritable bowel syndrome and obesity), it is unclear at this point whether these changes are a symptom of the disease or a contributing factor. A better knowledge of the mechanisms through which changes in microbiota composition (dysbiosis) promote disease states is needed to improve our understanding of the causal relationship between the gut microbiota and disease. While evidence of the preventive and therapeutic effects of probiotic strains on diarrhoeal illness and other intestinal conditions is promising, the exact mechanisms of the beneficial effects are not fully understood. Recent studies have raised the question of whether non-viable probiotic strains can confer health benefits on the host by influencing the immune system. As the potential health effect of these non-viable bacteria depends on whether the mechanism of this effect is dependent on viability, future research needs to consider each probiotic strain on a case-by-case basis. The present review provides a comprehensive, updated overview of the human gut microbiota, the factors influencing its composition and the role of probiotics as a therapeutic modality in the treatment and prevention of diseases and/or restoration of human health.

Gut microbiota and healthGastrointestinal motility and disordersProbiotics and Fermented FoodsProbioticGut floraDysbiosisDiseaseIrritable bowel syndromeFirmicutesBiologyAntibioticsImmunologyBifidobacterium

MeSH terms

AgingAnimalsAnti-Bacterial AgentsDietGram-Negative BacteriaGram-Positive BacteriaHealth StatusHumansIntestinal MucosaIntestinesModels, BiologicalInflammatory Bowel DiseasesDietary SupplementsProbioticsIrritable Bowel Syndrome

Funding

  • Science Foundation Ireland
  • Irish Research Council
  • Alimentary Health
Citations
465
FWCI
15.70
field-weighted impact
References
175
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.