2012
DOI: 10.1038/ismej.2012.158
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Butyrate-producing Clostridium cluster XIVa species specifically colonize mucins in an in vitro gut model

Abstract: The human gut is colonized by a complex microbiota with multiple benefits. Although the surfaceattached, mucosal microbiota has a unique composition and potential to influence human health, it remains difficult to study in vivo. Therefore, we performed an in-depth microbial characterization (human intestinal tract chip (HITChip)) of a recently developed dynamic in vitro gut model, which simulates both luminal and mucosal gut microbes (mucosal-simulator of human intestinal microbial ecosystem (M-SHIME)). Inter-… Show more

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Cited by 533 publications
(420 citation statements)
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“…Numerous systems have been developed and allowed to study the impact of prebiotics, probiotics, and antibiotics on the gut microbiota, or even the microbial composition at colon microenvironments. [26][27][28][29] The system used here has the particularity to maintain anaerobia due to the metabolic activity of the microorganisms constituting the microbiota: therefore, it leads to atmospheres that are variable among fermenters and whose constitution influences the microbial metabolism. In consequence, it is believed to simulate more closely the physiology of a human gut.…”
Section: Discussionmentioning
confidence: 99%
“…Numerous systems have been developed and allowed to study the impact of prebiotics, probiotics, and antibiotics on the gut microbiota, or even the microbial composition at colon microenvironments. [26][27][28][29] The system used here has the particularity to maintain anaerobia due to the metabolic activity of the microorganisms constituting the microbiota: therefore, it leads to atmospheres that are variable among fermenters and whose constitution influences the microbial metabolism. In consequence, it is believed to simulate more closely the physiology of a human gut.…”
Section: Discussionmentioning
confidence: 99%
“…Given the diffi cult access to the mucosal environment, the development of gut simulators that accurately mimic mucosal microbial colonization is considered a strong asset to obtain a better understanding of the host-microbe interactome. It is in this philosophy that Van den Abbeele et al ( 2013 ) decided to optimize the SHIME for mimicking mucosal microbial colonization by incorporation of mucin-covered microcosms. The major fi nding of this so-called M-SHIME, or mucosal SHIME, was that colonization of the mucosal environment was characterized by a higher abundance of butyrate producing Clostridium clusters IV and XIVa.…”
Section: Special Features Of the Modelmentioning
confidence: 99%
“…While the overall colonization profi le was still representative of the in vivo colonization process, this slight bias has been a common observation for several dynamic models that work with luminal content only. Van den Abbeele et al ( 2013 ) succeeded in removing this colonization selectivity by incorporating mucin-covered microcosms in the SHIME, thereby creating the M-SHIME or mucosal SHIME. Butyrate producing Clostridium clusters IV and XIVa were found to specifi cally colonize the mucosal environment thereby compensating for their lower abundance in the lumen.…”
Section: Stability and Reproducibility Of The Systemmentioning
confidence: 99%
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“…Clostridium cluster IV and XIVa species (El Aidy et al, 2012b). The latter bacterial groups were previously reported to stimulate the expression of Tregs (Atarashi et al, 2011), potentially related to their strong capacity to colonize the mucin-associated microbiota (Van den Abbeele et al, 2012). Moreover, these Clostridium cluster IV and XIVa species represent only a small proportion of the microbial community in the inflammatory bowel disease patients (Frank et al, 2007).…”
Section: The Biodiversity Conceptmentioning
confidence: 99%