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Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice

Nutrients are actively taken up by the brain via various transporters at the blood–brain barrier (BBB). A lack of specific nutrients in the aged brain, including decreased levels of docosahexaenoic acid (DHA), is associated with memory and cognitive dysfunction. To compensate for decreased brain DHA...

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Autores principales: Iwao, Takuro, Takata, Fuyuko, Matsumoto, Junichi, Aridome, Hisataka, Yasunaga, Miho, Yokoya, Miki, Kataoka, Yasufumi, Dohgu, Shinya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9934487/
https://www.ncbi.nlm.nih.gov/pubmed/36795730
http://dx.doi.org/10.1371/journal.pone.0281946
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author Iwao, Takuro
Takata, Fuyuko
Matsumoto, Junichi
Aridome, Hisataka
Yasunaga, Miho
Yokoya, Miki
Kataoka, Yasufumi
Dohgu, Shinya
author_facet Iwao, Takuro
Takata, Fuyuko
Matsumoto, Junichi
Aridome, Hisataka
Yasunaga, Miho
Yokoya, Miki
Kataoka, Yasufumi
Dohgu, Shinya
author_sort Iwao, Takuro
collection PubMed
description Nutrients are actively taken up by the brain via various transporters at the blood–brain barrier (BBB). A lack of specific nutrients in the aged brain, including decreased levels of docosahexaenoic acid (DHA), is associated with memory and cognitive dysfunction. To compensate for decreased brain DHA, orally supplied DHA must be transported from the circulating blood to the brain across the BBB through transport carriers, including major facilitator superfamily domain-containing protein 2a (MFSD2A) and fatty acid-binding protein 5 (FABP5) that transport esterified and non-esterified DHA, respectively. Although it is known that the integrity of the BBB is altered during aging, the impact of aging on DHA transport across the BBB has not been fully elucidated. We used 2-, 8-, 12-, and 24-month-old male C57BL/6 mice to evaluate brain uptake of [(14)C]DHA, as the non-esterified form, using an in situ transcardiac brain perfusion technique. Primary culture of rat brain endothelial cells (RBECs) was used to evaluate the effect of siRNA-mediated MFSD2A knockdown on cellular uptake of [(14)C]DHA. We observed that the 12- and 24-month-old mice exhibited significant reductions in brain uptake of [(14)C]DHA and decreased MFSD2A protein expression in the brain microvasculature compared with that of the 2-month-old mice; nevertheless, FABP5 protein expression was up-regulated with age. Brain uptake of [(14)C]DHA was inhibited by excess unlabeled DHA in 2-month-old mice. Transfection of MFSD2A siRNA into RBECs decreased the MFSD2A protein expression levels by 30% and reduced cellular uptake of [(14)C]DHA by 20%. These results suggest that MFSD2A is involved in non-esterified DHA transport at the BBB. Therefore, the decreased DHA transport across the BBB that occurs with aging could be due to age-related down-regulation of MFSD2A rather than FABP5.
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spelling pubmed-99344872023-02-17 Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice Iwao, Takuro Takata, Fuyuko Matsumoto, Junichi Aridome, Hisataka Yasunaga, Miho Yokoya, Miki Kataoka, Yasufumi Dohgu, Shinya PLoS One Research Article Nutrients are actively taken up by the brain via various transporters at the blood–brain barrier (BBB). A lack of specific nutrients in the aged brain, including decreased levels of docosahexaenoic acid (DHA), is associated with memory and cognitive dysfunction. To compensate for decreased brain DHA, orally supplied DHA must be transported from the circulating blood to the brain across the BBB through transport carriers, including major facilitator superfamily domain-containing protein 2a (MFSD2A) and fatty acid-binding protein 5 (FABP5) that transport esterified and non-esterified DHA, respectively. Although it is known that the integrity of the BBB is altered during aging, the impact of aging on DHA transport across the BBB has not been fully elucidated. We used 2-, 8-, 12-, and 24-month-old male C57BL/6 mice to evaluate brain uptake of [(14)C]DHA, as the non-esterified form, using an in situ transcardiac brain perfusion technique. Primary culture of rat brain endothelial cells (RBECs) was used to evaluate the effect of siRNA-mediated MFSD2A knockdown on cellular uptake of [(14)C]DHA. We observed that the 12- and 24-month-old mice exhibited significant reductions in brain uptake of [(14)C]DHA and decreased MFSD2A protein expression in the brain microvasculature compared with that of the 2-month-old mice; nevertheless, FABP5 protein expression was up-regulated with age. Brain uptake of [(14)C]DHA was inhibited by excess unlabeled DHA in 2-month-old mice. Transfection of MFSD2A siRNA into RBECs decreased the MFSD2A protein expression levels by 30% and reduced cellular uptake of [(14)C]DHA by 20%. These results suggest that MFSD2A is involved in non-esterified DHA transport at the BBB. Therefore, the decreased DHA transport across the BBB that occurs with aging could be due to age-related down-regulation of MFSD2A rather than FABP5. Public Library of Science 2023-02-16 /pmc/articles/PMC9934487/ /pubmed/36795730 http://dx.doi.org/10.1371/journal.pone.0281946 Text en © 2023 Iwao et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Iwao, Takuro
Takata, Fuyuko
Matsumoto, Junichi
Aridome, Hisataka
Yasunaga, Miho
Yokoya, Miki
Kataoka, Yasufumi
Dohgu, Shinya
Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title_full Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title_fullStr Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title_full_unstemmed Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title_short Aging decreases docosahexaenoic acid transport across the blood-brain barrier in C57BL/6J mice
title_sort aging decreases docosahexaenoic acid transport across the blood-brain barrier in c57bl/6j mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9934487/
https://www.ncbi.nlm.nih.gov/pubmed/36795730
http://dx.doi.org/10.1371/journal.pone.0281946
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