Literature DB >> 22064556

The intestinal microbiota and obesity.

Samuel J Kallus1, Lawrence J Brandt.   

Abstract

Obesity has been and continues to be an epidemic in the United States. Obesity has been addressed in multiple health initiatives, including Healthy People 2010, with no state meeting the proposed goal of a prevalence of obesity < 15% of the adult population. In contrast, obesity rates have continued to increase, with the self-reported prevalence of obesity among adults increasing by 1.1% from 2007 to the present. Indeed, since 2009, 33 states reported obesity prevalences of 25% or more with only 1 state reporting prevalence < 20%. There have been multiple approaches for the treatment of obesity, including fad diets, incentive-based exercise programs, and gastric bypass surgery; none of which have been optimal. In a murine model, it was shown that the majority of the intestinal microbiome consists of two bacterial phyla, the Bacteroidetes and the Firmicutes, and that the relative abundance of these two phyla differs among lean and obese mice; the obese mouse had a higher proportion of Firmicutes to Bacteroidetes (50% greater) than the lean mouse. The same results were appreciated in obese humans compared to lean subjects. The postulated explanation for this finding is that Firmicutes produce more complete metabolism of a given energy source than do Bacteroidetes, thus promoting more efficient absorption of calories and subsequent weight gain. Researchers were able to demonstrate that colonizing germ-free mice with the intestinal microbiome from obese mice led to an increased total body fat in the recipient mice despite a lack of change in diet. The converse, that, colonizing germ-free obese mice with the intestinal microbiome of thin mice causing a decreased total body fat in the recipient mice, has not yet been done. Other possible mechanisms by which the intestinal microbiome affects host obesity include induction of low-grade inflammation with lipopolysaccharide, regulation of host genes responsible for energy expenditure and storage, and hormonal communication between the intestinal microbiome and the host. The following review discusses the microbiome-obesity relationship and proposed mechanisms by which the intestinal microbiota is hypothesized to influence weight gain.

Entities:  

Mesh:

Year:  2012        PMID: 22064556     DOI: 10.1097/MCG.0b013e31823711fd

Source DB:  PubMed          Journal:  J Clin Gastroenterol        ISSN: 0192-0790            Impact factor:   3.062


  60 in total

Review 1.  Human microbiota, blood group antigens, and disease.

Authors:  D Rose Ewald; Susan C J Sumner
Journal:  Wiley Interdiscip Rev Syst Biol Med       Date:  2018-01-09

Review 2.  Chronic oral exposure to pesticides and their consequences on metabolic regulation: role of the microbiota.

Authors:  Flore Depeint; Hafida Khorsi-Cauet; Narimane Djekkoun; Jean-Daniel Lalau; Véronique Bach
Journal:  Eur J Nutr       Date:  2021-04-10       Impact factor: 5.614

Review 3.  The intestinal microbiota: its role in health and disease.

Authors:  Luc Biedermann; Gerhard Rogler
Journal:  Eur J Pediatr       Date:  2015-01-07       Impact factor: 3.183

Review 4.  Minireview: Gut microbiota: the neglected endocrine organ.

Authors:  Gerard Clarke; Roman M Stilling; Paul J Kennedy; Catherine Stanton; John F Cryan; Timothy G Dinan
Journal:  Mol Endocrinol       Date:  2014-06-03

Review 5.  Yogurt and Cardiometabolic Diseases: A Critical Review of Potential Mechanisms.

Authors:  Melissa Anne Fernandez; Shirin Panahi; Noémie Daniel; Angelo Tremblay; André Marette
Journal:  Adv Nutr       Date:  2017-11-15       Impact factor: 8.701

Review 6.  Contribution of diet to gut microbiota and related host cardiometabolic health: diet-gut interaction in human health.

Authors:  Yi Wan; Jun Tang; Jiaomei Li; Jie Li; Jihong Yuan; Fenglei Wang; Duo Li
Journal:  Gut Microbes       Date:  2020-01-21

Review 7.  The Host Microbiome Regulates and Maintains Human Health: A Primer and Perspective for Non-Microbiologists.

Authors:  Sunil Thomas; Jacques Izard; Emily Walsh; Kristen Batich; Pakawat Chongsathidkiet; Gerard Clarke; David A Sela; Alexander J Muller; James M Mullin; Korin Albert; John P Gilligan; Katherine DiGuilio; Rima Dilbarova; Walker Alexander; George C Prendergast
Journal:  Cancer Res       Date:  2017-03-14       Impact factor: 12.701

8.  The intestinal microbiota composition and weight development in children: the KOALA Birth Cohort Study.

Authors:  L E J M Scheepers; J Penders; C A Mbakwa; C Thijs; M Mommers; I C W Arts
Journal:  Int J Obes (Lond)       Date:  2014-10-09       Impact factor: 5.095

Review 9.  Microbiota as a mediator of cancer progression and therapy.

Authors:  Jillian L Pope; Sarah Tomkovich; Ye Yang; Christian Jobin
Journal:  Transl Res       Date:  2016-08-03       Impact factor: 7.012

Review 10.  The human gut microbiome and body metabolism: implications for obesity and diabetes.

Authors:  Sridevi Devaraj; Peera Hemarajata; James Versalovic
Journal:  Clin Chem       Date:  2013-02-11       Impact factor: 8.327

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