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Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood

In rodent literature, there is evidence that excessive fructose consumption during development has a detrimental impact on hippocampal structure and function. In this study of 103 children ages 7–11 years old, we investigated whether dietary fructose intake was related to alterations in hippocampal...

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Autores principales: Clark, Kristi A., Alves, Jasmin M., Jones, Sabrina, Yunker, Alexandra G., Luo, Shan, Cabeen, Ryan P., Angelo, Brendan, Xiang, Anny H., Page, Kathleen A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7230400/
https://www.ncbi.nlm.nih.gov/pubmed/32224933
http://dx.doi.org/10.3390/nu12040909
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author Clark, Kristi A.
Alves, Jasmin M.
Jones, Sabrina
Yunker, Alexandra G.
Luo, Shan
Cabeen, Ryan P.
Angelo, Brendan
Xiang, Anny H.
Page, Kathleen A.
author_facet Clark, Kristi A.
Alves, Jasmin M.
Jones, Sabrina
Yunker, Alexandra G.
Luo, Shan
Cabeen, Ryan P.
Angelo, Brendan
Xiang, Anny H.
Page, Kathleen A.
author_sort Clark, Kristi A.
collection PubMed
description In rodent literature, there is evidence that excessive fructose consumption during development has a detrimental impact on hippocampal structure and function. In this study of 103 children ages 7–11 years old, we investigated whether dietary fructose intake was related to alterations in hippocampal volume and connectivity in humans. To examine if these associations were specific to fructose or were related to dietary sugars intake in general, we explored relationships between dietary intake of added sugars and the monosaccharide, glucose, on the same brain measures. We found that increased dietary intake of fructose, measured as a percentage of total calories, was associated with both an increase in the volume of the CA2/3 subfield of the right hippocampus and increased axial, radial, and mean diffusivity in the prefrontal connections of the right cingulum. These findings are consistent with the idea that increased fructose consumption during childhood may be associated with an inflammatory process, and/or decreases or delays in myelination and/or pruning. Increased habitual consumption of glucose or added sugar in general were associated with an increased volume of right CA2/3, but not with any changes in the connectivity of the hippocampus. These findings support animal data suggesting that higher dietary intake of added sugars, particularly fructose, are associated with alterations in hippocampal structure and connectivity during childhood.
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spelling pubmed-72304002020-05-22 Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood Clark, Kristi A. Alves, Jasmin M. Jones, Sabrina Yunker, Alexandra G. Luo, Shan Cabeen, Ryan P. Angelo, Brendan Xiang, Anny H. Page, Kathleen A. Nutrients Article In rodent literature, there is evidence that excessive fructose consumption during development has a detrimental impact on hippocampal structure and function. In this study of 103 children ages 7–11 years old, we investigated whether dietary fructose intake was related to alterations in hippocampal volume and connectivity in humans. To examine if these associations were specific to fructose or were related to dietary sugars intake in general, we explored relationships between dietary intake of added sugars and the monosaccharide, glucose, on the same brain measures. We found that increased dietary intake of fructose, measured as a percentage of total calories, was associated with both an increase in the volume of the CA2/3 subfield of the right hippocampus and increased axial, radial, and mean diffusivity in the prefrontal connections of the right cingulum. These findings are consistent with the idea that increased fructose consumption during childhood may be associated with an inflammatory process, and/or decreases or delays in myelination and/or pruning. Increased habitual consumption of glucose or added sugar in general were associated with an increased volume of right CA2/3, but not with any changes in the connectivity of the hippocampus. These findings support animal data suggesting that higher dietary intake of added sugars, particularly fructose, are associated with alterations in hippocampal structure and connectivity during childhood. MDPI 2020-03-26 /pmc/articles/PMC7230400/ /pubmed/32224933 http://dx.doi.org/10.3390/nu12040909 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Clark, Kristi A.
Alves, Jasmin M.
Jones, Sabrina
Yunker, Alexandra G.
Luo, Shan
Cabeen, Ryan P.
Angelo, Brendan
Xiang, Anny H.
Page, Kathleen A.
Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title_full Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title_fullStr Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title_full_unstemmed Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title_short Dietary Fructose Intake and Hippocampal Structure and Connectivity during Childhood
title_sort dietary fructose intake and hippocampal structure and connectivity during childhood
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7230400/
https://www.ncbi.nlm.nih.gov/pubmed/32224933
http://dx.doi.org/10.3390/nu12040909
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