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Caloric restriction disrupts the microbiota and colonization resistance
by
Pollard, Katherine S.
, Miller, Steve
, Cai, Jingwei
, Spranger, Joachim
, Collins, Stephanie L.
, Ingebrigtsen, Danielle
, Friedrich, Marie
, Turnbaugh, Jessie A.
, Patterson, Andrew D.
, Turnbaugh, Peter J.
, von Schwartzenberg, Reiner Jumpertz
, Dickmann, Sophia
, Liu, Su-Yang
, Lyalina, Svetlana
, Bisanz, Jordan E.
, Mai, Knut
, Spanogiannopoulos, Peter
, Ang, Qi Yan
in
38
/ 45
/ 45/23
/ 631/326/2565/2134
/ 631/443/319/1642/2037
/ 64
/ 64/60
/ 692/700/2814
/ Adipose tissue
/ Adiposity
/ Animals
/ Bacteria
/ Bacteria - growth & development
/ Bacteria - isolation & purification
/ Bacteria - metabolism
/ Bacteria - pathogenicity
/ Bacterial Toxins - metabolism
/ Bile acids
/ Bile Acids and Salts - metabolism
/ Body Weight
/ Body weight loss
/ Caloric Restriction
/ Calories
/ Clostridioides difficile - growth & development
/ Clostridioides difficile - isolation & purification
/ Clostridioides difficile - metabolism
/ Colonization
/ Diet
/ Diet, Reducing
/ Dietary restrictions
/ Energy balance
/ Energy Metabolism
/ Enzymes
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glucose
/ Humanities and Social Sciences
/ Humans
/ Hypocaloric diet
/ Intestinal Absorption
/ Intestinal microflora
/ Male
/ Metabolism
/ Mice
/ Microbiomes
/ Microbiota
/ multidisciplinary
/ Nutrient deficiency
/ Nutrient loss
/ Nutrients - metabolism
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Symbionts
/ Symbiosis
/ Toxins
/ Transplantation
/ Weight control
/ Weight Loss
2021
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Caloric restriction disrupts the microbiota and colonization resistance
by
Pollard, Katherine S.
, Miller, Steve
, Cai, Jingwei
, Spranger, Joachim
, Collins, Stephanie L.
, Ingebrigtsen, Danielle
, Friedrich, Marie
, Turnbaugh, Jessie A.
, Patterson, Andrew D.
, Turnbaugh, Peter J.
, von Schwartzenberg, Reiner Jumpertz
, Dickmann, Sophia
, Liu, Su-Yang
, Lyalina, Svetlana
, Bisanz, Jordan E.
, Mai, Knut
, Spanogiannopoulos, Peter
, Ang, Qi Yan
in
38
/ 45
/ 45/23
/ 631/326/2565/2134
/ 631/443/319/1642/2037
/ 64
/ 64/60
/ 692/700/2814
/ Adipose tissue
/ Adiposity
/ Animals
/ Bacteria
/ Bacteria - growth & development
/ Bacteria - isolation & purification
/ Bacteria - metabolism
/ Bacteria - pathogenicity
/ Bacterial Toxins - metabolism
/ Bile acids
/ Bile Acids and Salts - metabolism
/ Body Weight
/ Body weight loss
/ Caloric Restriction
/ Calories
/ Clostridioides difficile - growth & development
/ Clostridioides difficile - isolation & purification
/ Clostridioides difficile - metabolism
/ Colonization
/ Diet
/ Diet, Reducing
/ Dietary restrictions
/ Energy balance
/ Energy Metabolism
/ Enzymes
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glucose
/ Humanities and Social Sciences
/ Humans
/ Hypocaloric diet
/ Intestinal Absorption
/ Intestinal microflora
/ Male
/ Metabolism
/ Mice
/ Microbiomes
/ Microbiota
/ multidisciplinary
/ Nutrient deficiency
/ Nutrient loss
/ Nutrients - metabolism
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Symbionts
/ Symbiosis
/ Toxins
/ Transplantation
/ Weight control
/ Weight Loss
2021
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Caloric restriction disrupts the microbiota and colonization resistance
by
Pollard, Katherine S.
, Miller, Steve
, Cai, Jingwei
, Spranger, Joachim
, Collins, Stephanie L.
, Ingebrigtsen, Danielle
, Friedrich, Marie
, Turnbaugh, Jessie A.
, Patterson, Andrew D.
, Turnbaugh, Peter J.
, von Schwartzenberg, Reiner Jumpertz
, Dickmann, Sophia
, Liu, Su-Yang
, Lyalina, Svetlana
, Bisanz, Jordan E.
, Mai, Knut
, Spanogiannopoulos, Peter
, Ang, Qi Yan
in
38
/ 45
/ 45/23
/ 631/326/2565/2134
/ 631/443/319/1642/2037
/ 64
/ 64/60
/ 692/700/2814
/ Adipose tissue
/ Adiposity
/ Animals
/ Bacteria
/ Bacteria - growth & development
/ Bacteria - isolation & purification
/ Bacteria - metabolism
/ Bacteria - pathogenicity
/ Bacterial Toxins - metabolism
/ Bile acids
/ Bile Acids and Salts - metabolism
/ Body Weight
/ Body weight loss
/ Caloric Restriction
/ Calories
/ Clostridioides difficile - growth & development
/ Clostridioides difficile - isolation & purification
/ Clostridioides difficile - metabolism
/ Colonization
/ Diet
/ Diet, Reducing
/ Dietary restrictions
/ Energy balance
/ Energy Metabolism
/ Enzymes
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glucose
/ Humanities and Social Sciences
/ Humans
/ Hypocaloric diet
/ Intestinal Absorption
/ Intestinal microflora
/ Male
/ Metabolism
/ Mice
/ Microbiomes
/ Microbiota
/ multidisciplinary
/ Nutrient deficiency
/ Nutrient loss
/ Nutrients - metabolism
/ Phenotypes
/ Science
/ Science (multidisciplinary)
/ Symbionts
/ Symbiosis
/ Toxins
/ Transplantation
/ Weight control
/ Weight Loss
2021
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Caloric restriction disrupts the microbiota and colonization resistance
Journal Article
Caloric restriction disrupts the microbiota and colonization resistance
2021
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Overview
Diet is a major factor that shapes the gut microbiome
1
, but the consequences of diet-induced changes in the microbiome for host pathophysiology remain poorly understood. We conducted a randomized human intervention study using a very-low-calorie diet (NCT01105143). Although metabolic health was improved, severe calorie restriction led to a decrease in bacterial abundance and restructuring of the gut microbiome. Transplantation of post-diet microbiota to mice decreased their body weight and adiposity relative to mice that received pre-diet microbiota. Weight loss was associated with impaired nutrient absorption and enrichment in
Clostridioides difficile
, which was consistent with a decrease in bile acids and was sufficient to replicate metabolic phenotypes in mice in a toxin-dependent manner. These results emphasize the importance of diet–microbiome interactions in modulating host energy balance and the need to understand the role of diet in the interplay between pathogenic and beneficial symbionts.
Severe caloric restriction in humans leads to reversible changes in the gut microbiota that promote weight loss and the expansion of an enteric pathogen in mice.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 45
/ 45/23
/ 64
/ 64/60
/ Animals
/ Bacteria
/ Bacteria - growth & development
/ Bacteria - isolation & purification
/ Bacterial Toxins - metabolism
/ Bile Acids and Salts - metabolism
/ Calories
/ Clostridioides difficile - growth & development
/ Clostridioides difficile - isolation & purification
/ Clostridioides difficile - metabolism
/ Diet
/ Enzymes
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glucose
/ Humanities and Social Sciences
/ Humans
/ Male
/ Mice
/ Science
/ Toxins
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