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An approach for evaluating the effects of dietary fiber polysaccharides on the human gut microbiome and plasma proteome
by
Castillo, Juan J.
, Marion, Stacey
, Barratt, Michael J.
, Han, Nathan
, Vinoy, Sophie
, Meynier, Alexandra
, Desai, Chandani
, Barve, Ruteja A.
, Henrissat, Bernard
, Heath, Andrew C.
, Delannoy-Bruno, Omar
, Cheng, Jiye
, Couture, Garret
, Lombard, Vincent
, Gordon, Jeffrey I.
, Lebrilla, Carlito B.
, Hayashi, David K.
in
Angiogenesis
/ Aptamers
/ Biological Sciences
/ Bone growth
/ Carbohydrates
/ Cell signaling
/ Computer applications
/ Diet
/ Dietary Fiber
/ Dietary Fiber - metabolism
/ Endosperm
/ Fibrosis
/ Gastrointestinal Microbiome
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glycan
/ Glycosidases
/ Glycoside hydrolase
/ Growth factors
/ Humans
/ Immune system
/ Intestinal microflora
/ Life Sciences
/ Linkages
/ MAP kinase
/ Medical Sciences
/ Microbiomes
/ Microbiota
/ Peas
/ Plasma proteins
/ Polysaccharides
/ Polysaccharides - metabolism
/ Proteins
/ Proteome
/ Proteomes
/ Saccharides
/ Snack foods
/ Spectrometry
/ Vascular endothelial growth factor
2022
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An approach for evaluating the effects of dietary fiber polysaccharides on the human gut microbiome and plasma proteome
by
Castillo, Juan J.
, Marion, Stacey
, Barratt, Michael J.
, Han, Nathan
, Vinoy, Sophie
, Meynier, Alexandra
, Desai, Chandani
, Barve, Ruteja A.
, Henrissat, Bernard
, Heath, Andrew C.
, Delannoy-Bruno, Omar
, Cheng, Jiye
, Couture, Garret
, Lombard, Vincent
, Gordon, Jeffrey I.
, Lebrilla, Carlito B.
, Hayashi, David K.
in
Angiogenesis
/ Aptamers
/ Biological Sciences
/ Bone growth
/ Carbohydrates
/ Cell signaling
/ Computer applications
/ Diet
/ Dietary Fiber
/ Dietary Fiber - metabolism
/ Endosperm
/ Fibrosis
/ Gastrointestinal Microbiome
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glycan
/ Glycosidases
/ Glycoside hydrolase
/ Growth factors
/ Humans
/ Immune system
/ Intestinal microflora
/ Life Sciences
/ Linkages
/ MAP kinase
/ Medical Sciences
/ Microbiomes
/ Microbiota
/ Peas
/ Plasma proteins
/ Polysaccharides
/ Polysaccharides - metabolism
/ Proteins
/ Proteome
/ Proteomes
/ Saccharides
/ Snack foods
/ Spectrometry
/ Vascular endothelial growth factor
2022
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An approach for evaluating the effects of dietary fiber polysaccharides on the human gut microbiome and plasma proteome
by
Castillo, Juan J.
, Marion, Stacey
, Barratt, Michael J.
, Han, Nathan
, Vinoy, Sophie
, Meynier, Alexandra
, Desai, Chandani
, Barve, Ruteja A.
, Henrissat, Bernard
, Heath, Andrew C.
, Delannoy-Bruno, Omar
, Cheng, Jiye
, Couture, Garret
, Lombard, Vincent
, Gordon, Jeffrey I.
, Lebrilla, Carlito B.
, Hayashi, David K.
in
Angiogenesis
/ Aptamers
/ Biological Sciences
/ Bone growth
/ Carbohydrates
/ Cell signaling
/ Computer applications
/ Diet
/ Dietary Fiber
/ Dietary Fiber - metabolism
/ Endosperm
/ Fibrosis
/ Gastrointestinal Microbiome
/ Gastrointestinal Microbiome - physiology
/ Genes
/ Glycan
/ Glycosidases
/ Glycoside hydrolase
/ Growth factors
/ Humans
/ Immune system
/ Intestinal microflora
/ Life Sciences
/ Linkages
/ MAP kinase
/ Medical Sciences
/ Microbiomes
/ Microbiota
/ Peas
/ Plasma proteins
/ Polysaccharides
/ Polysaccharides - metabolism
/ Proteins
/ Proteome
/ Proteomes
/ Saccharides
/ Snack foods
/ Spectrometry
/ Vascular endothelial growth factor
2022
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An approach for evaluating the effects of dietary fiber polysaccharides on the human gut microbiome and plasma proteome
Journal Article
An approach for evaluating the effects of dietary fiber polysaccharides on the human gut microbiome and plasma proteome
2022
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Overview
Significance Dietary fibers contain complex mixtures of biomolecules, making it difficult to develop/test hypotheses about how different fiber-types impact different components of the human gut microbiome and how microbiome changes that they produce are linked to human physiology. Here, we analyze microbiome and plasma proteome responses to consumption of two fiber-enriched snacks in two human studies. We use a variety of computational methods to correlate their effects on gut microbiome genes encoding enzymes that degrade complex fiber-associated polysaccharides, the microbial products of polysaccharide degradation, and plasma proteins representing diverse physiological processes. This approach can be used to guide the design of fiber-containing snacks that more precisely manipulate microbiome features in ways that improve nutritional and health status.
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