CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Microbiota

  • The Effect of Diet and Exercise on Intestinal Integrity and Microbial Diversity in Mice📎

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    Abstract Title:

    The Effect of Diet and Exercise on Intestinal Integrity and Microbial Diversity in Mice.

    Abstract Source:

    PLoS One. 2016 ;11(3):e0150502. Epub 2016 Mar 8. PMID: 26954359

    Abstract Author(s):

    Sara C Campbell, Paul J Wisniewski, Michael Noji, Lora R McGuinness, Max M Häggblom, Stanley A Lightfoot, Laurie B Joseph, Lee J Kerkhof

    Article Affiliation:

    Sara C Campbell

    Abstract:

    BACKGROUND:The gut microbiota is now known to play an important role contributing to inflammatory-based chronic diseases. This study examined intestinal integrity/inflammation and the gut microbial communities in sedentary and exercising mice presented with a normal or high-fat diet.

    METHODS:Thirty-six, 6-week old C57BL/6NTac male mice were fed a normal or high-fat diet for 12-weeks and randomly assigned to exercise or sedentary groups. After 12 weeks animals were sacrificed and duodenum/ileum tissues were fixed for immunohistochemistry for occludin, E-cadherin, and cyclooxygenase-2 (COX-2). The bacterial communities were assayed in fecal samples using terminal restriction fragment length polymorphism (TRFLP) analysis and pyrosequencing of 16S rRNA gene amplicons.

    RESULTS:Lean sedentary (LS) mice presented normal histologic villi while obese sedentary (OS) mice had similar villi height with more than twice the width of the LS animals. Both lean (LX) and obese exercise (OX) mice duodenum and ileum were histologically normal. COX-2 expression was the greatest in the OS group, followed by LS, LX and OX. The TRFLP and pyrosequencing indicated that members of the Clostridiales order were predominant in all diet groups. Specific phylotypes were observed with exercise, including Faecalibacterium prausnitzi, Clostridium spp., and Allobaculum spp.

    CONCLUSION:These data suggest that exercise has a strong influence on gut integrity and host microbiome which points to the necessity for more mechanistic studies of the interactions between specific bacteria in the gut and its host.

  • The gut microbial community in metabolic syndrome patients is modified by diet.

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    Abstract Title:

    The gut microbial community in metabolic syndrome patients is modified by diet.

    Abstract Source:

    J Nutr Biochem. 2016 Jan ;27:27-31. Epub 2015 Aug 20. PMID: 26376027

    Abstract Author(s):

    Carmen Haro, Sonia Garcia-Carpintero, Juan F Alcala-Diaz, Francisco Gomez-Delgado, Javier Delgado-Lista, Pablo Perez-Martinez, Oriol A Rangel Zuñiga, Gracia M Quintana-Navarro, Blanca B Landa, Jose C Clemente, Jose Lopez-Miranda, Antonio Camargo, Francisco Perez-Jimenez

    Article Affiliation:

    Carmen Haro

    Abstract:

    Intestinal microbiota changes may be involved in the development of metabolic syndrome (MetS), which is a multicomponent disorder frequently associated with obesity. The aim of this study was to test the effect of consuming two healthy diets: a Mediterranean diet and a low-fat high-carbohydrate diet, for 2years in the gut microbiota of MetS patients and those in the control group. We analyzed the differences in the bacterial community structure between the groups after 2years of dietary intervention (Mediterranean or low-fat diet) through quantitative polymerase chain reaction using primers, targeting specific bacterial taxa. We observed, at basal time, that the abundance of Bacteroides, Eubacterium and Lactobacillus genera is lower in the control group than in MetS patients, while Bacteroides fragilis group, Parabacteroides distasonis, Bacteroides thetaiotaomicron, Faecalibacterium prausnitzii, Fusobacterium nucleatum, Bifidobacterium longum, Bifidobacterium adolescentis, Ruminococcus flavefaciens subgroup and Eubacterium rectale are depleted in MetS patients (all P values<.05). Additionally, we found that long-term consumption of Mediterranean diet partially restores the population of P. distasonis, B. thetaiotaomicron, F. prausnitzii, B. adolescentis and B. longum in MetS patients (all P values<.05). Our results suggest that the Mediterranean diet could be a useful tool to restore potentially beneficial members of the gut microbiota, although the stability of these changes over time still remains to be assessed.

  • The microbiota: an exercise immunology perspective📎

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    Abstract Title:

    The microbiota: an exercise immunology perspective.

    Abstract Source:

    Exerc Immunol Rev. 2015 ;21:70-9. PMID: 25825908

    Abstract Author(s):

    Stéphane Bermon, Bernardo Petriz, Alma Kajėnienė, Jonato Prestes, Lindy Castell, Octavio L Franco

    Article Affiliation:

    Stéphane Bermon

    Abstract:

    The gut microbiota consists of a cluster of microorganisms that produces several signaling molecules of a hormonal nature which are released into the blood stream and act at distal sites. There is a growing body of evidence indicating that microbiota may be modulated by several environmental conditions, including different exercise stimulus, as well some pathologies. Enriched bacterial diversity has also been associated with improved health status and alterations in immune system, making multiple connections between host and microbiota. Experimental evidence has shown that reduced levels and variations in the bacterial community are associated with health impairments, while increased microbiota diversity improves metabolic profile and immunological responses. So far, very few controlled studies have focused on the interactions between acute or chronic exercise and the gut microbiota. However, some preliminary experimental data obtained from animal studies or probiotics studies show some interesting results at the immune level, indicating that the microbiota also acts like an endocrine organ and is sensitive to the homeostatic and physiological changes associated with exercise. Thus, our review intends to shed some light on the interaction between gut microbiota, exercise and immunomodulation.

  • Voluntary and forced exercise differentially alters the gut microbiome in C57BL/6J mice📎

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    Abstract Title:

    Voluntary and forced exercise differentially alters the gut microbiome in C57BL/6J mice.

    Abstract Source:

    J Appl Physiol (1985). 2015 Apr 15 ;118(8):1059-66. Epub 2015 Feb 12. PMID: 25678701

    Abstract Author(s):

    Jacob M Allen, Margret E Berg Miller, Brandt D Pence, Keith Whitlock, Vandana Nehra, H Rex Gaskins, Bryan A White, John D Fryer, Jeffrey A Woods

    Article Affiliation:

    Jacob M Allen

    Abstract:

    We have previously shown that voluntary wheel running (VWR) attenuates, whereas forced treadmill running (FTR) exacerbates, intestinal inflammation and clinical outcomes in a mouse model of colitis. As the gut microbiome is implicated in colitis, we hypothesized that VWR and FTR would differentially affect the gut microbiome. Mice (9-10/treatment) were randomly assigned to VWR, FTR, or sedentary home cage control (SED) for 6 wk. VWR were given running wheel access, whereas FTR ran on a treadmill for 40 min/day at 8-12 m/min, 5% grade. Forty-eight hours after the last exercise session, DNA was isolated from the fecal pellets and cecal contents, and the conserved bacterial 16S rRNA gene was amplified and sequenced using the Illumina Miseq platform. Permutational multivariate analysis of variance based on weighted UniFrac distance matrix revealed different bacterial clusters between feces and cecal contents in all groups (P<0.01). Interestingly, the community structures of the three treatment groups clustered separately from each other in both gut regions (P<0.05). Contrary to our hypothesis, theα-diversity metric, Chao1, indicated that VWR led to reduced bacterial richness compared with FTR or SED (P<0.05). Taxonomic evaluation revealed that both VWR and FTR altered many individual bacterial taxa. Of particular interest, Turicibacter spp., which has been strongly associated with immune function and bowel disease, was significantly lower in VWR vs. SED/FTR. These data indicate that VWR and FTR differentially alter the intestinal microbiome of mice. These effects were observed in both the feces and cecum despite vastly different community structures between each intestinal region.

  • What Makes a 97-Year-Old Man Cycle 5,000 km a Year?

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    Abstract Title:

    What Makes a 97-Year-Old Man Cycle 5,000 km a Year?

    Abstract Source:

    Gerontology. 2016 Jan 19. Epub 2016 Jan 19. PMID: 26780108

    Abstract Author(s):

    Sulin Cheng, Hans Degens, Michael Evans, Shu Mei Cheng, Harri Selänne, Jörn Rittweger, Ari Heinonen, Harri Suominen, Timo Strandberg, Markku Alen, Marko T Korhonen

    Article Affiliation:

    Sulin Cheng

    Abstract:

    BACKGROUND:The nature versus nurture debate is one of the oldest issues in the study of longevity, health and successful aging.

    OBJECTIVE:We present a 97-year-old man (I.K.) as an example of the effects of habitual exercise on the aging process.

    METHODS:Extensive assessments included medical examinations, interviews, musculoskeletal structure, performance characteristics, cognitive function and gut microbiota composition.

    RESULTS:I.K. suffers from iatrogenic hypogonadism, prostate cancer, hypothyroidism and a history of deep popliteal thrombosis. Notwithstanding, he cycles up to 5,000 km a year and participates in competitive sports. His musculoskeletal properties, athletic performance, cognitive function and gut microbiota are outstanding. Some traits even exceed those seen in middle-aged men.

    CONCLUSIONS:His long-term physically and intellectually active lifestyles combined with extensive social interactions have most likely contributed to his exercise capacity, despite his medical history.

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