Literature DB >> 25345825

Immune homeostasis, dysbiosis and therapeutic modulation of the gut microbiota.

C T Peterson1, V Sharma, L Elmén, S N Peterson.   

Abstract

The distal gut harbours ∼10(13) bacteria, representing the most densely populated ecosystem known. The functional diversity expressed by these communities is enormous and relatively unexplored. The past decade of research has unveiled the profound influence that the resident microbial populations bestow to host immunity and metabolism. The evolution of these communities from birth generates a highly adapted and highly personalized microbiota that is stable in healthy individuals. Immune homeostasis is achieved and maintained due in part to the extensive interplay between the gut microbiota and host mucosal immune system. Imbalances of gut microbiota may lead to a number of pathologies such as obesity, type I and type II diabetes, inflammatory bowel disease (IBD), colorectal cancer (CRC) and inflammaging/immunosenscence in the elderly. In-depth understanding of the underlying mechanisms that control homeostasis and dysbiosis of the gut microbiota represents an important step in our ability to reliably modulate the gut microbiota with positive clinical outcomes. The potential of microbiome-based therapeutics to treat epidemic human disease is of great interest. New therapeutic paradigms, including second-generation personalized probiotics, prebiotics, narrow spectrum antibiotic treatment and faecal microbiome transplantation, may provide safer and natural alternatives to traditional clinical interventions for chronic diseases. This review discusses host-microbiota homeostasis, consequences of its perturbation and the associated challenges in therapeutic developments that lie ahead.
© 2014 British Society for Immunology.

Entities:  

Keywords:  bacterial; host-pathogen interactions; inflammation; mucosa

Mesh:

Year:  2015        PMID: 25345825      PMCID: PMC4337670          DOI: 10.1111/cei.12474

Source DB:  PubMed          Journal:  Clin Exp Immunol        ISSN: 0009-9104            Impact factor:   4.330


  146 in total

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2.  Neonatal antibiotic treatment alters gastrointestinal tract developmental gene expression and intestinal barrier transcriptome.

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3.  A humanized gnotobiotic mouse model of host-archaeal-bacterial mutualism.

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4.  Strain-resolved community genomic analysis of gut microbial colonization in a premature infant.

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8.  Linking long-term dietary patterns with gut microbial enterotypes.

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Authors:  Justin L Sonnenburg; Christina T L Chen; Jeffrey I Gordon
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Journal:  Transl Res       Date:  2015-09-07       Impact factor: 7.012

4.  Fecal microbiota analysis of polycystic kidney disease patients according to renal function: A pilot study.

Authors:  Rabi Yacoub; Girish N Nadkarni; Daniel I McSkimming; Lee D Chaves; Sham Abyad; Mark A Bryniarski; Amanda M Honan; Shruthi A Thomas; Madan Gowda; John C He; Jaime Uribarri
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5.  Hypoxia inducible factor-1α-induced interleukin-33 expression in intestinal epithelia contributes to mucosal homeostasis in inflammatory bowel disease.

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7.  Gut microbiome and serum metabolome alterations in obesity and after weight-loss intervention.

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8.  An In Vitro Enrichment Strategy for Formulating Synergistic Synbiotics.

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Review 9.  Sepsis-Induced T Cell Immunoparalysis: The Ins and Outs of Impaired T Cell Immunity.

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10.  Following spinal cord injury, PDE4B drives an acute, local inflammatory response and a chronic, systemic response exacerbated by gut dysbiosis and endotoxemia.

Authors:  Scott A Myers; Leila Gobejishvili; Sujata Saraswat Ohri; C Garrett Wilson; Kariena R Andres; Amberly S Riegler; Hridgandh Donde; Swati Joshi-Barve; Shirish Barve; Scott R Whittemore
Journal:  Neurobiol Dis       Date:  2018-12-14       Impact factor: 5.996

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