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Journal ArticleDOI

Propionate as a health-promoting microbial metabolite in the human gut.

TLDR
The present review discusses the two main propionate-production pathways and provides an extended gene-based list of microorganisms with the potential to producepropionate and evaluates the promising potential of arabinoxylan, polydextrose, and L-rhamnose to act as substrates to increase microbial propionates.
Abstract
Propionate is a major microbial fermentation metabolite in the human gut with putative health effects that extend beyond the gut epithelium. Propionate is thought to lower lipogenesis, serum cholesterol levels, and carcinogenesis in other tissues. Steering microbial propionate production through diet could therefore be a potent strategy to increase health effects from microbial carbohydrate fermentation. The present review first discusses the two main propionate-production pathways and provides an extended gene-based list of microorganisms with the potential to produce propionate. Second, it evaluates the promising potential of arabinoxylan, polydextrose, and L-rhamnose to act as substrates to increase microbial propionate. Third, given the complexity of the gut microbiota, propionate production is approached from a microbial-ecological perspective that includes interaction processes such as cross-feeding mechanisms. Finally, it introduces the development of functional gene-based analytical tools to detect and characterize propionate-producing microorganisms in a complex community. The information in this review may be helpful for designing functional food strategies that aim to promote propionate-associated health benefits.

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Prebiotic oligosaccharides and their fermentation products in a novel putative probiotic strain from the genus Weissella.

TL;DR: The authors' large intestine is like a large metabolic organ colonised by microorganisms, and Beneficial probiotic bacteria are of interest since they might metabolise certain prebiotic carbohydrates and produc ...
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Gut microbiota alterations after switching from a protease inhibitor or efavirenz to raltegravir in a randomized, controlled study

TL;DR: In this paper , the authors demonstrate that a single ART agent switch caused microbiota alterations, most importantly an increase in diversity with EFV to RAL switch, which may be associated with reduced inflammation and/or increase in weight.
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Age-Dependent Prebiotic Effects of Soluble Corn Fiber in M-SHIME® Gut Microbial Ecosystems

TL;DR: In this article , the effects of SCF treatment on colonic microbiota composition and metabolic activity and on host-microbiome interactions were evaluated using an in vitro mucosal simulator of the human intestinal microbial ecosystem (M-SHIME®).
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In vitro colonic fermentation of red kidney beans depends on cotyledon cells integrity and microbiota adaptation.

TL;DR: It was found that cell integrity and adaptation to bean cells modulate the hierarchy of nutrient utilization, with non-starch polysaccharides preferred over starch and proteins by microbiota exposed to bean Cells.
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Fermentability of select polyphenol-rich substrates in the canine faecal inoculum and their interaction with a canine-origin probiotic: an in vitro appraisal

TL;DR: In this article, the hindgut fermentability and digestibility of four different sources of polyphenols, namely, orange peel (ORP), pomegranate (Punica granatum) peel (PMP), Indian blackberry (Syzygium cumini) pulp (IBP), and Jerusalem artichoke (Helianthus tuberosus) tuber (JAT), and their influence on the viability of a canine-origin probiotic, Lactobacillus johnsonii CPN23, were compared.
References
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Journal ArticleDOI

Dietary Modulation of the Human Colonic Microbiota: Introducing the Concept of Prebiotics

TL;DR: By combining the rationale of pro- and prebiotics, the concept of synbiotics is proposed to characterize some colonic foods with interesting nutritional properties that make these compounds candidates for classification as health-enhancing functional food ingredients.
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The gut microbiota as an environmental factor that regulates fat storage

TL;DR: In this article, the authors found that conventionalization of adult germ-free C57BL/6 mice with a normal microbiota harvested from the distal intestine (cecum) of conventionally raised animals produces a 60% increase in body fat content and insulin resistance within 14 days despite reduced food intake.
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Host-Bacterial Mutualism in the Human Intestine

TL;DR: New studies are revealing how the gut microbiota has coevolved with us and how it manipulates and complements the authors' biology in ways that are mutually beneficial.
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Dissemination and growth of cancer cells in metastatic sites

TL;DR: Inhibition of the growth of metastases in secondary sites offers a promising approach for cancer therapy and could help to improve the treatment of metastatic disease.
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Gut flora in health and disease

TL;DR: Gut flora might be an essential factor in certain pathological disorders, including multisystem organ failure, colon cancer, and inflammatory bowel diseases, and Probiotics and prebiotics are known to have a role in prevention or treatment of some diseases.
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