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The Potential of Gut Commensals in Reinforcing Intestinal Barrier Function and Alleviating Inflammation

Nutrients · 2018 · Vol. 10(8) · pp. 988–988
Kaisa HiippalaHanne JouhtenAki RonkainenA L HartikainenVeera KainulainenJonna JalankaReetta Satokari

Abstract

The intestinal microbiota, composed of pro- and anti-inflammatory microbes, has an essential role in maintaining gut homeostasis and functionality. An overly hygienic lifestyle, consumption of processed and fiber-poor foods, or antibiotics are major factors modulating the microbiota and possibly leading to longstanding dysbiosis. Dysbiotic microbiota is characterized to have altered composition, reduced diversity and stability, as well as increased levels of lipopolysaccharide-containing, proinflammatory bacteria. Specific commensal species as novel probiotics, so-called next-generation probiotics, could restore the intestinal health by means of attenuating inflammation and strengthening the epithelial barrier. In this review we summarize the latest findings considering the beneficial effects of the promising commensals across all major intestinal phyla. These include the already well-known bifidobacteria, which use extracellular structures or secreted substances to promote intestinal health. <i>Faecalibacterium prausnitzii</i>, <i>Roseburia intestinalis</i>, and <i>Eubacterium hallii</i> metabolize dietary fibers as major short-chain fatty acid producers providing energy sources for enterocytes and achieving anti-inflammatory effects in the gut. <i>Akkermansia muciniphila</i> exerts beneficial action in metabolic diseases and fortifies the barrier function. The health-promoting effects of <i>Bacteroides</i> species are relatively recently discovered with the findings of excreted immunomodulatory molecules. These promising, unconventional probiotics could be a part of biotherapeutic strategies in the future.

Gut microbiota and healthProbiotics and Fermented FoodsDigestive system and related healthFaecalibacterium prausnitziiAkkermansia muciniphilaDysbiosisGut floraAkkermansiaBiologyMicrobiologyBacteroidesBarrier functionCommensalism

MeSH terms

Gastrointestinal MicrobiomeBacteriaFatty Acids, VolatileHumansInflammationIntestinal MucosaProbioticsDysbiosis

Funding

  • Academy of Finland
Citations
570
FWCI
18.00
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References
169
Percentile
100%
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Cited by
Gut Microbiota and Obesity: A Role for Probiotics
Nutrients · 2019 · 592 citations
The Gut Microbiota and Inflammation: An Overview
International Journal of Environmental Research and Public Health · 2020 · 702 citations
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