Literature DB >> 28008784

Therapeutic interventions for gut dysbiosis and related disorders in the elderly: antibiotics, probiotics or faecal microbiota transplantation?

R C Vemuri1, R Gundamaraju1, T Shinde2, R Eri1.   

Abstract

Ageing and physiological functions of the human body are inversely proportional to each other. The gut microbiota and host immune system co-evolve from infants to the elderly. Ageing is accompanied by a decline in gut microbial diversity, immunity and metabolism, which increases susceptibility to infections. Any compositional change in the gut is directly linked to gastrointestinal disorders, obesity and metabolic diseases. Increase in opportunistic pathogen invasion in the gut like Clostridium difficile leading to C. difficile infection is more common in the elderly population. Frequent hospitalisation and high prevalence of nosocomial infections with the ageing is also well documented. Long-term utilisation of broad-spectrum antibiotic therapy is being followed in order to control these infections. Nosocomial infections and antibiotic therapy in combination or alone is leading to gastroenteritis followed by Clostridium associated diarrhoea or antibiotic associated diarrhoea. Above all, use of broad-spectrum antibiotics is highly debated all over the world due to growing antimicrobial resistance. The use of narrow spectrum antibiotics could be helpful to some extent. Dietary supplementation of probiotics with prebiotics (synbiotics) or without prebiotics has improved gut commensal diversity and regulated the immune system. The recent emergence of faecal microbiota transplantation has played an important role in treating recurrent Clostridium associated diarrhoea. This review focuses on various therapeutic interventions for gut dysbiosis and gastrointestinal diseases in the elderly. The possible mechanism for antimicrobial resistance and mechanism of action of probiotics are also discussed in detail.

Entities:  

Keywords:  age-specific; antibiotic resistance; feacal microbiota; gut microbiota; synbiotics

Mesh:

Substances:

Year:  2016        PMID: 28008784     DOI: 10.3920/BM2016.0115

Source DB:  PubMed          Journal:  Benef Microbes        ISSN: 1876-2883            Impact factor:   4.205


  21 in total

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5.  Lactobacillus acidophilus DDS-1 Modulates Intestinal-Specific Microbiota, Short-Chain Fatty Acid and Immunological Profiles in Aging Mice.

Authors:  Ravichandra Vemuri; Rohit Gundamaraju; Tanvi Shinde; Agampodi Promoda Perera; Waheedha Basheer; Benjamin Southam; Shakuntla V Gondalia; Avinash V Karpe; David J Beale; Stephen Tristram; Kiran D K Ahuja; Madeleine Ball; Christopher J Martoni; Rajaraman Eri
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9.  A human origin strain Lactobacillus acidophilus DDS-1 exhibits superior in vitro probiotic efficacy in comparison to plant or dairy origin probiotics.

Authors:  Ravichandra Vemuri; Tanvi Shinde; Madhur D Shastri; Agampodi Promoda Perera; Stephen Tristram; Christopher J Martoni; Rohit Gundamaraju; Kiran D K Ahuja; Madeleine Ball; Rajaraman Eri
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10.  Lactobacillus acidophilus DDS-1 Modulates the Gut Microbiota and Improves Metabolic Profiles in Aging Mice.

Authors:  Ravichandra Vemuri; Tanvi Shinde; Rohit Gundamaraju; Shakuntla V Gondalia; Avinash V Karpe; David J Beale; Christopher J Martoni; Rajaraman Eri
Journal:  Nutrients       Date:  2018-09-06       Impact factor: 5.717

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