Propionate lowers blood glucose and alters lipid metabolism in healthy subjects
Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 ± 12.4% (P< 0.02). Similarly, in vitro digestibility was reduced by 47.4 ± 1.1% (P< 0.01). One week of dietary supplementa...
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Published in | The American journal of clinical nutrition Vol. 54; no. 5; pp. 860 - 865 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Bethesda, MD
Elsevier Inc
01.11.1991
American Society for Clinical Nutrition |
Subjects | |
Online Access | Get full text |
ISSN | 0002-9165 1938-3207 |
DOI | 10.1093/ajcn/54.5.860 |
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Abstract | Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 ± 12.4% (P< 0.02). Similarly, in vitro digestibility was reduced by 47.4 ± 1.1% (P< 0.01). One week of dietary supplementation with 9.9 g sodium propionate in bread/d reduced the blood glucose area in comparison with standard propionate-free bread by 38.0 ± 8.7% (P< 0.05), but increased fecal bulk by 28.3 ± 8.7% (P< 0.05) and anaerobic microflora by 0.564 ± 0.165 × 106/g feces (P< 0.05), specifically as bifidobacteria. Day-long breath hydrogen concentrations did not increase after 1 wk on propionate bread but methane production increased in the three methane producers. Although lipid changes were not significant, five subjects showed reduced high-density-lipoprotein and increased triglyceride concentrations, both of which correlated with increased fecal weight (P< 0.05). Because propionate reduces the rate of starch digestion, studies using oral propionate must take into account its action as an enzyme inhibitor. |
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AbstractList | Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 +/- 12.1% Similarly, in vitro digestibility was reduced by 47.4 +/- 1.1% (P less than 0.01). One week of dietary supplementation with 9.9 g sodium propionate in bread/d reduced the blood glucose area in comparison with standard propionate-free bread by 38.0 +/- 8.7% (P less than 0.05), but increased fecal bulk by 28.3 +/- 8.7% (P less than 0.05) and anaerobic microflora by 0.564 +/- 0.165 X 10(6)/g feces (P less than 0.05), specifically as bifidobacteria. Day-long breath hydrogen concentrations did not increase after 1 wk on propionate bread but methane production increased in the three methane producers. Although lipid changes were not significant, five subjects showed reduced high-density-lipoprotein and increased triglyceride concentrations, both of which correlated with increased fecal weight (P less than 0.05). Because propionate reduces the rate of starch digestion, studies using oral propionate must take into account its action as an enzyme inhibitor. Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 +/- 12.1% Similarly, in vitro digestibility was reduced by 47.4 +/- 1.1% (P less than 0.01). One week of dietary supplementation with 9.9 g sodium propionate in bread/d reduced the blood glucose area in comparison with standard propionate-free bread by 38.0 +/- 8.7% (P less than 0.05), but increased fecal bulk by 28.3 +/- 8.7% (P less than 0.05) and anaerobic microflora by 0.564 +/- 0.165 X 10(6)/g feces (P less than 0.05), specifically as bifidobacteria. Day-long breath hydrogen concentrations did not increase after 1 wk on propionate bread but methane production increased in the three methane producers. Although lipid changes were not significant, five subjects showed reduced high-density-lipoprotein and increased triglyceride concentrations, both of which correlated with increased fecal weight (P less than 0.05). Because propionate reduces the rate of starch digestion, studies using oral propionate must take into account its action as an enzyme inhibitor.Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 +/- 12.1% Similarly, in vitro digestibility was reduced by 47.4 +/- 1.1% (P less than 0.01). One week of dietary supplementation with 9.9 g sodium propionate in bread/d reduced the blood glucose area in comparison with standard propionate-free bread by 38.0 +/- 8.7% (P less than 0.05), but increased fecal bulk by 28.3 +/- 8.7% (P less than 0.05) and anaerobic microflora by 0.564 +/- 0.165 X 10(6)/g feces (P less than 0.05), specifically as bifidobacteria. Day-long breath hydrogen concentrations did not increase after 1 wk on propionate bread but methane production increased in the three methane producers. Although lipid changes were not significant, five subjects showed reduced high-density-lipoprotein and increased triglyceride concentrations, both of which correlated with increased fecal weight (P less than 0.05). Because propionate reduces the rate of starch digestion, studies using oral propionate must take into account its action as an enzyme inhibitor. Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy volunteers by 47.6 ± 12.4% (P< 0.02). Similarly, in vitro digestibility was reduced by 47.4 ± 1.1% (P< 0.01). One week of dietary supplementation with 9.9 g sodium propionate in bread/d reduced the blood glucose area in comparison with standard propionate-free bread by 38.0 ± 8.7% (P< 0.05), but increased fecal bulk by 28.3 ± 8.7% (P< 0.05) and anaerobic microflora by 0.564 ± 0.165 × 106/g feces (P< 0.05), specifically as bifidobacteria. Day-long breath hydrogen concentrations did not increase after 1 wk on propionate bread but methane production increased in the three methane producers. Although lipid changes were not significant, five subjects showed reduced high-density-lipoprotein and increased triglyceride concentrations, both of which correlated with increased fecal weight (P< 0.05). Because propionate reduces the rate of starch digestion, studies using oral propionate must take into account its action as an enzyme inhibitor. |
Author | Bosello, O Rao, AV Todesco, T Jenkins, DJ |
Author_xml | – sequence: 1 givenname: T surname: Todesco fullname: Todesco, T organization: From the Faculty of Medicine, University of Verona, Italy, the Department of Nutritional Sciences, Faculty of Medicine, and the Clinical Nutrition and Risk Factor Modification Center, St Michael's Hospital, University of Toronto – sequence: 2 givenname: AV surname: Rao fullname: Rao, AV organization: From the Faculty of Medicine, University of Verona, Italy, the Department of Nutritional Sciences, Faculty of Medicine, and the Clinical Nutrition and Risk Factor Modification Center, St Michael's Hospital, University of Toronto – sequence: 3 givenname: O surname: Bosello fullname: Bosello, O organization: From the Faculty of Medicine, University of Verona, Italy, the Department of Nutritional Sciences, Faculty of Medicine, and the Clinical Nutrition and Risk Factor Modification Center, St Michael's Hospital, University of Toronto – sequence: 4 givenname: DJ surname: Jenkins fullname: Jenkins, DJ organization: From the Faculty of Medicine, University of Verona, Italy, the Department of Nutritional Sciences, Faculty of Medicine, and the Clinical Nutrition and Risk Factor Modification Center, St Michael's Hospital, University of Toronto |
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Keywords | lipid and carbohydrate metabolism Propionate Human Short chain Propionic acid Oral administration Glucose Metabolism Triglyceride Fatty acids Bread Chemotherapy Diet Carbohydrate Glycemia |
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Publisher | Elsevier Inc American Society for Clinical Nutrition |
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Snippet | Incorporation of 3.3 g sodium propionate per 50 g available carbohydrate portion of bread reduced acutely the blood glucose response area in six healthy... |
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SubjectTerms | additif alimentaire aditivos alimentarios Adult adulte adultos adults almidon amidon analysis Biological and medical sciences blood glucose Blood Glucose - analysis blood lipids Bread Breath Tests breathing carbohydrate metabolism Carbohydrates chemistry Cholesterol, HDL Cholesterol, HDL - analysis dietary supplements Digestion faeces Feces Female flora microbiana flore microbienne food additives Food Analysis Fundamental and applied biological sciences. Psychology genero humano genre humain glicemia glycaemia glycemie heces hidrogeno Humans hydrogen Hydrogen - analysis hydrogene lipaemia lipemia lipemie lipid and carbohydrate metabolism Lipid Metabolism Male mankind metabolism metabolisme des glucides metabolisme des lipides metabolismo de carbohidratos metabolismo de lipidos Metabolisms and neurohumoral controls metano methane Methane - analysis microbial flora microorganisms Middle Aged pharmacology Propionate propionate sel Propionates Propionates - chemistry Propionates - pharmacology propionates salts propionatos sales Reference Values respiracion respiration saliva salive sodio sodium sodium propionate Starch Starch - metabolism Vertebrates: anatomy and physiology, studies on body, several organs or systems |
Title | Propionate lowers blood glucose and alters lipid metabolism in healthy subjects |
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