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Abstract
Obesity-related metabolic syndrome has been linked with gut microbiome dysbiosis while dietary fibre (DF) and protein can modify the gut microbial ecosystem and metabolism. After 20-weeks of high-fat fructose-rich diet feeding for the development of obesity, forty-three 30-week old Göttingen Minipigs (31 ± 4.0 kg body weight) were allocated to one of the four diets with low or high DF and protein contents in a two by two factorial design and digesta were collected from the intestinal segments of minipigs after 8 weeks at libitum feeding. High DF content increased (P < 0.001) while high protein content decreased (P = 0.004) the content of non-starch polysaccharides (NSP) in all intestinal segments. Arabinoxylan (AX) as proportion of NSP was higher with high DF (P < 0.001) but decreased from the distal small intestine to the mid colon (P < 0.001). High DF increased the relative abundance of Blautia, Faecalibacterium and Peptococcus in the caecum, the mid colon and faeces, reduced the intestinal concentrations of total short-chain fatty acids (SCFA) (P = 0.020) and acetate (P = 0.011) but slightly increased butyrate pools in the large intestine (P ≤ 0.050) compared to low DF. High protein increased the SCFA (P = 0.026) and propionate (P = 0.044) concentrations in the gut. High DF induced a lower increase in the BCFA concentration and proportion throughout the colon (P < 0.001). The butyrate concentrations in plasma from the jugular vein were increased with high DF diets (P = 0.031), whereas the propionate concentrations were increased (P < 0.001) and succinate were decreased (P = 0.001) with high protein diets compared with low protein diets. In conclusion, AX in the high DF diets was continuously degraded up to the mid-colon, associated with enriched butyrate-producing bacteria and slightly improved butyrate production, while protein fermentation was attenuated by high DF and high protein did not show prebiotic effects in this obese minipig model.
Original language | English |
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Journal | Food & Function |
Volume | 11 |
Issue | 12 |
Pages (from-to) | 10758-10773 |
Number of pages | 16 |
ISSN | 2042-6496 |
DOIs | |
Publication status | Published - Dec 2020 |
Keywords
- ARABINOXYLANS
- BRAN
- BUTYRATE
- COLONIC FERMENTATION
- DIGESTION
- GUT MICROBIOTA
- HEALTH
- PROPIONATE
- RESISTANT STARCH
- WHEY-PROTEIN
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Dive into the research topics of 'Effects of dietary fibre and protein content on intestinal fibre degradation, short-chain fatty acid and microbiota composition in a high-fat fructose-rich diet induced obese Göttingen Minipig model'. Together they form a unique fingerprint.Projects
- 1 Finished
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MERITS: Metabolic changes by carbohydrate and protein quality in the development and mitigation of metabolic syndrome
Knudsen, K. E. B. (Participant), Lærke, H. N. (Participant), Hedemann, M. S. (Participant), Nørskov, N. (Participant) & Purup, S. (Participant)
01/04/2015 → 30/06/2019
Project: Research
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Dietary fibre and protein do not synergistically influence insulin, metabolic or inflammatory biomarkers in young obese Göttingen Minipigs
Xu, Y., Curtasu, M. V., Knudsen, K. E. B., Hedemann, M. S., Theil, P. K. & Lærke, H. N., Apr 2021, In: British Journal of Nutrition. 125, 7, p. 828-840 13 p.Research output: Contribution to journal/Conference contribution in journal/Contribution to newspaper › Journal article › Research › peer-review
Open AccessFile3 Citations (Scopus)60 Downloads (Pure) -
Obesity Development and Signs of Metabolic Abnormalities in Young Göttingen Minipigs Consuming Energy Dense Diets Varying in Carbohydrate Quality
Curtasu, M. V., Hedemann, M. S., Lærke, H. N. & Knudsen, K. E. B., 6 May 2021, In: Nutrients. 13, 5, 19 p., 1560.Research output: Contribution to journal/Conference contribution in journal/Contribution to newspaper › Journal article › Research › peer-review
Open Access4 Citations (Scopus) -
Obesity-related metabolome and gut microbiota profiles of juvenile göttingen minipigs—long-term intake of fructose and resistant starch
Curtasu, M. V., Tafintseva, V., Bendiks, Z. A., Marco, M. L., Kohler, A., Xu, Y., Nørskov, N. P., Lærke, H. N., Knudsen, K. E. B. & Hedemann, M. S., Nov 2020, In: Metabolites. 10, 11, p. 1-27 456.Research output: Contribution to journal/Conference contribution in journal/Contribution to newspaper › Journal article › Research › peer-review
Open Access16 Citations (Scopus)