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      Perspective: Assessing Tolerance to Nondigestible Carbohydrate Consumption

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          ABSTRACT

          Human intestinal enzymes do not hydrolyze nondigestible carbohydrates (NDCs), and thus, they are not digested and absorbed in the small intestine. Instead, NDCs are partially to completely fermented by the intestinal microbiota. Select NDCs are associated with health benefits such as laxation and lowering of blood cholesterol and glucose. NDCs provide functional attributes to processed foods, including sugar or fat replacers, thickening agents, and bulking agents. Additionally, NDCs are incorporated into processed foods to increase their fiber content. Although consumption of NDCs can benefit health and contribute functional characteristics to foods, they can cause gastrointestinal symptoms, such as flatulence and bloating. As gastrointestinal symptoms negatively affect consumer well-being and their acceptance of foods containing NDC ingredients, it is crucial to consider tolerance when designing food products and testing their physiological health benefits in clinical trials. This perspective provides recommendations for the approach to assess gastrointestinal tolerance to NDCs, with a focus on study design, population criteria, intervention, comparator, and outcome. Special issues related to studies in children and implications for stakeholders are also discussed. It is recommended that the evaluation of gastrointestinal tolerance to NDCs be conducted in randomized, blinded, controlled crossover studies using standard gastrointestinal questionnaires, with attention to study participant background diets, health status, lifestyle, and medications.

          Abstract

          Statement of significance: This perspective provides recommendations for research approaches to assess gastrointestinal tolerance to nondigestible carbohydrates by providing a roadmap for the study design, population criteria, intervention, comparator, and outcomes.

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          Most cited references109

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          Impact of diet in shaping gut microbiota revealed by a comparative study in children from Europe and rural Africa.

          Gut microbial composition depends on different dietary habits just as health depends on microbial metabolism, but the association of microbiota with different diets in human populations has not yet been shown. In this work, we compared the fecal microbiota of European children (EU) and that of children from a rural African village of Burkina Faso (BF), where the diet, high in fiber content, is similar to that of early human settlements at the time of the birth of agriculture. By using high-throughput 16S rDNA sequencing and biochemical analyses, we found significant differences in gut microbiota between the two groups. BF children showed a significant enrichment in Bacteroidetes and depletion in Firmicutes (P < 0.001), with a unique abundance of bacteria from the genus Prevotella and Xylanibacter, known to contain a set of bacterial genes for cellulose and xylan hydrolysis, completely lacking in the EU children. In addition, we found significantly more short-chain fatty acids (P < 0.001) in BF than in EU children. Also, Enterobacteriaceae (Shigella and Escherichia) were significantly underrepresented in BF than in EU children (P < 0.05). We hypothesize that gut microbiota coevolved with the polysaccharide-rich diet of BF individuals, allowing them to maximize energy intake from fibers while also protecting them from inflammations and noninfectious colonic diseases. This study investigates and compares human intestinal microbiota from children characterized by a modern western diet and a rural diet, indicating the importance of preserving this treasure of microbial diversity from ancient rural communities worldwide.
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            Stool form scale as a useful guide to intestinal transit time.

            Stool form scales are a simple method of assessing intestinal transit rate but are not widely used in clinical practice or research, possibly because of the lack of evidence that they are responsive to changes in transit time. We set out to assess the responsiveness of the Bristol stool form scale to change in transit time. Sixty-six volunteers had their whole-gut transit time (WGTT) measured with radiopaque marker pellets and their stools weighed, and they kept a diary of their stool form on a 7-point scale and of their defecatory frequency. WGTT was then altered with senna and loperamide, and the measurements were repeated. The base-line WGTT measurements correlated with defecatory frequency (r = 0.35, P = 0.005) and with stool output (r = -0.41, P = 0.001) but best with stool form (r = -0.54, P < 0.001). When the volunteers took senna (n = 44), the WGTT decreased, whereas defecatory frequency, stool form score, and stool output increased (all, P < 0.001). With loperamide (n = 43) all measurements changed in the opposite direction. Change in WGTT from base line correlated with change in defecatory frequency (r = 0.41, P < 0.001) and with change in stool output (n = -0.54, P < 0.001) but best with change in stool form (r = -0.65, P < 0.001). This study has shown that a stool form scale can be used to monitor change in intestinal function. Such scales have utility in both clinical practice and research.
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              Dietary fiber and prebiotics and the gastrointestinal microbiota

              ABSTRACT The gastrointestinal microbiota has an important role in human health, and there is increasing interest in utilizing dietary approaches to modulate the composition and metabolic function of the microbial communities that colonize the gastrointestinal tract to improve health, and prevent or treat disease. One dietary strategy for modulating the microbiota is consumption of dietary fiber and prebiotics that can be metabolized by microbes in the gastrointestinal tract. Human alimentary enzymes are not able to digest most complex carbohydrates and plant polysaccharides. Instead, these polysaccharides are metabolized by microbes which generate short-chain fatty acids (SCFAs), including acetate, propionate, and butyrate. This article reviews the current knowledge of the impact of fiber and prebiotic consumption on the composition and metabolic function of the human gastrointestinal microbiota, including the effects of physiochemical properties of complex carbohydrates, adequate intake and treatment dosages, and the phenotypic responses related to the composition of the human microbiota.
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                Author and article information

                Contributors
                Journal
                Adv Nutr
                Adv Nutr
                advances
                Advances in Nutrition
                Oxford University Press
                2161-8313
                2156-5376
                November 2022
                30 August 2022
                30 August 2022
                : 13
                : 6
                : 2084-2097
                Affiliations
                Department of Food Science and Human Nutrition, University of Illinois , Urbana, IL, USA
                Department of Pediatrics, Baylor College of Medicine, Houston, TX, USA; Children's Nutrition Research Center, United States Department of Agriculture , Houston, TX, USA
                Department of Food Science and Human Nutrition, Institute of Food and Agricultural Sciences, University of Florida , Gainesville, FL, USA
                Department of Animal Sciences, University of Illinois , Urbana, IL USA
                Independent Consultant , Ridgefield, WA, USA
                Department of Food Science and Nutrition, University of Minnesota , Twin Cities, MN USA
                Translational Research in Gastrointestinal Disorders, KU Leuven , Targid, Leuven, Belgium; and Leuven Food Science and Nutrition Research Centre , Leuven, Belgium
                Author notes
                Address correspondence to HDH (e-mail: hholsche@ 123456illinois.edu ).
                Author information
                https://orcid.org/0000-0003-4918-2426
                https://orcid.org/0000-0002-5352-7565
                Article
                nmac091
                10.1093/advances/nmac091
                9776727
                36041178
                28147c67-3011-4890-8726-a43ce77be812
                © The Author(s) 2022. Published by Oxford University Press on behalf of the American Society for Nutrition.

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 13 June 2022
                : 02 August 2022
                : 25 August 2022
                : 09 November 2022
                Page count
                Pages: 14
                Categories
                Perspective
                AcademicSubjects/MED00060

                dietary fiber,oligosaccharides,low-digestible carbohydrates,laxation,gastrointestinal intolerance

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