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Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study

BACKGROUND: A carbohydrate-restricted diet aimed at lowering insulin levels has the potential to slow Alzheimer’s disease (AD). Restricting carbohydrate consumption reduces insulin resistance, which could improve glucose uptake and neural health. A hallmark feature of AD is widespread cortical thinn...

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Autores principales: Bramen, Jennifer E., Siddarth, Prabha, Popa, Emily S., Kress, Gavin T., Rapozo, Molly K., Hodes, John F., Ganapathi, Aarthi S., Slyapich, Colby B., Glatt, Ryan M., Pierce, Kyron, Porter, Verna R., Wong, Claudia, Kim, Mihae, Dye, Richelin V., Panos, Stella, Bookheimer, Tess, Togashi, Tori, Loong, Spencer, Raji, Cyrus A., Bookheimer, Susan Y., Roach, Jared C., Merrill, David A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10657694/
https://www.ncbi.nlm.nih.gov/pubmed/37742646
http://dx.doi.org/10.3233/JAD-230458
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author Bramen, Jennifer E.
Siddarth, Prabha
Popa, Emily S.
Kress, Gavin T.
Rapozo, Molly K.
Hodes, John F.
Ganapathi, Aarthi S.
Slyapich, Colby B.
Glatt, Ryan M.
Pierce, Kyron
Porter, Verna R.
Wong, Claudia
Kim, Mihae
Dye, Richelin V.
Panos, Stella
Bookheimer, Tess
Togashi, Tori
Loong, Spencer
Raji, Cyrus A.
Bookheimer, Susan Y.
Roach, Jared C.
Merrill, David A.
author_facet Bramen, Jennifer E.
Siddarth, Prabha
Popa, Emily S.
Kress, Gavin T.
Rapozo, Molly K.
Hodes, John F.
Ganapathi, Aarthi S.
Slyapich, Colby B.
Glatt, Ryan M.
Pierce, Kyron
Porter, Verna R.
Wong, Claudia
Kim, Mihae
Dye, Richelin V.
Panos, Stella
Bookheimer, Tess
Togashi, Tori
Loong, Spencer
Raji, Cyrus A.
Bookheimer, Susan Y.
Roach, Jared C.
Merrill, David A.
author_sort Bramen, Jennifer E.
collection PubMed
description BACKGROUND: A carbohydrate-restricted diet aimed at lowering insulin levels has the potential to slow Alzheimer’s disease (AD). Restricting carbohydrate consumption reduces insulin resistance, which could improve glucose uptake and neural health. A hallmark feature of AD is widespread cortical thinning; however, no study has demonstrated that lower net carbohydrate (nCHO) intake is linked to attenuated cortical atrophy in patients with AD and confirmed amyloidosis. OBJECTIVE: We tested the hypothesis that individuals with AD and confirmed amyloid burden eating a carbohydrate-restricted diet have thicker cortex than those eating a moderate-to-high carbohydrate diet. METHODS: A total of 31 patients (mean age 71.4±7.0 years) with AD and confirmed amyloid burden were divided into two groups based on a 130 g/day nCHO cutoff. Cortical thickness was estimated from T1-weighted MRI using FreeSurfer. Cortical surface analyses were corrected for multiple comparisons using cluster-wise probability. We assessed group differences using a two-tailed two-independent sample t-test. Linear regression analyses using nCHO as a continuous variable, accounting for confounders, were also conducted. RESULTS: The lower nCHO group had significantly thicker cortex within somatomotor and visual networks. Linear regression analysis revealed that lower nCHO intake levels had a significant association with cortical thickness within the frontoparietal, cingulo-opercular, and visual networks. CONCLUSIONS: Restricting carbohydrates may be associated with reduced atrophy in patients with AD. Lowering nCHO to under 130 g/day would allow patients to follow the well-validated MIND diet while benefiting from lower insulin levels.
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spelling pubmed-106576942023-11-19 Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study Bramen, Jennifer E. Siddarth, Prabha Popa, Emily S. Kress, Gavin T. Rapozo, Molly K. Hodes, John F. Ganapathi, Aarthi S. Slyapich, Colby B. Glatt, Ryan M. Pierce, Kyron Porter, Verna R. Wong, Claudia Kim, Mihae Dye, Richelin V. Panos, Stella Bookheimer, Tess Togashi, Tori Loong, Spencer Raji, Cyrus A. Bookheimer, Susan Y. Roach, Jared C. Merrill, David A. J Alzheimers Dis Research Article BACKGROUND: A carbohydrate-restricted diet aimed at lowering insulin levels has the potential to slow Alzheimer’s disease (AD). Restricting carbohydrate consumption reduces insulin resistance, which could improve glucose uptake and neural health. A hallmark feature of AD is widespread cortical thinning; however, no study has demonstrated that lower net carbohydrate (nCHO) intake is linked to attenuated cortical atrophy in patients with AD and confirmed amyloidosis. OBJECTIVE: We tested the hypothesis that individuals with AD and confirmed amyloid burden eating a carbohydrate-restricted diet have thicker cortex than those eating a moderate-to-high carbohydrate diet. METHODS: A total of 31 patients (mean age 71.4±7.0 years) with AD and confirmed amyloid burden were divided into two groups based on a 130 g/day nCHO cutoff. Cortical thickness was estimated from T1-weighted MRI using FreeSurfer. Cortical surface analyses were corrected for multiple comparisons using cluster-wise probability. We assessed group differences using a two-tailed two-independent sample t-test. Linear regression analyses using nCHO as a continuous variable, accounting for confounders, were also conducted. RESULTS: The lower nCHO group had significantly thicker cortex within somatomotor and visual networks. Linear regression analysis revealed that lower nCHO intake levels had a significant association with cortical thickness within the frontoparietal, cingulo-opercular, and visual networks. CONCLUSIONS: Restricting carbohydrates may be associated with reduced atrophy in patients with AD. Lowering nCHO to under 130 g/day would allow patients to follow the well-validated MIND diet while benefiting from lower insulin levels. IOS Press 2023-10-24 /pmc/articles/PMC10657694/ /pubmed/37742646 http://dx.doi.org/10.3233/JAD-230458 Text en © 2023 – The authors. Published by IOS Press https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial (CC BY-NC 4.0) License (https://creativecommons.org/licenses/by-nc/4.0/) , which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bramen, Jennifer E.
Siddarth, Prabha
Popa, Emily S.
Kress, Gavin T.
Rapozo, Molly K.
Hodes, John F.
Ganapathi, Aarthi S.
Slyapich, Colby B.
Glatt, Ryan M.
Pierce, Kyron
Porter, Verna R.
Wong, Claudia
Kim, Mihae
Dye, Richelin V.
Panos, Stella
Bookheimer, Tess
Togashi, Tori
Loong, Spencer
Raji, Cyrus A.
Bookheimer, Susan Y.
Roach, Jared C.
Merrill, David A.
Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title_full Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title_fullStr Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title_full_unstemmed Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title_short Impact of Eating a Carbohydrate-Restricted Diet on Cortical Atrophy in a Cross-Section of Amyloid Positive Patients with Alzheimer’s Disease: A Small Sample Study
title_sort impact of eating a carbohydrate-restricted diet on cortical atrophy in a cross-section of amyloid positive patients with alzheimer’s disease: a small sample study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10657694/
https://www.ncbi.nlm.nih.gov/pubmed/37742646
http://dx.doi.org/10.3233/JAD-230458
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