Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain

Blood–brain barrier dysfunction occurs in ageing and in neurodegenerative diseases. Here, the authors use scRNA-seq to identify transcriptomic changes in endothelial cell subtypes in the aged mouse brain, some of which may generalize to human and can be reversed by treatment with a GLP-1R agonist.

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Autores principales: Lei Zhao, Zhongqi Li, Joaquim S. L. Vong, Xinyi Chen, Hei-Ming Lai, Leo Y. C. Yan, Junzhe Huang, Samuel K. H. Sy, Xiaoyu Tian, Yu Huang, Ho Yin Edwin Chan, Hon-Cheong So, Wai-Lung Ng, Yamei Tang, Wei-Jye Lin, Vincent C. T. Mok, Ho Ko
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/0cd6b88e4d0b4038b2b9807cac7e8608
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spelling oai:doaj.org-article:0cd6b88e4d0b4038b2b9807cac7e86082021-12-02T16:38:27ZPharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain10.1038/s41467-020-18249-32041-1723https://doaj.org/article/0cd6b88e4d0b4038b2b9807cac7e86082020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18249-3https://doaj.org/toc/2041-1723Blood–brain barrier dysfunction occurs in ageing and in neurodegenerative diseases. Here, the authors use scRNA-seq to identify transcriptomic changes in endothelial cell subtypes in the aged mouse brain, some of which may generalize to human and can be reversed by treatment with a GLP-1R agonist.Lei ZhaoZhongqi LiJoaquim S. L. VongXinyi ChenHei-Ming LaiLeo Y. C. YanJunzhe HuangSamuel K. H. SyXiaoyu TianYu HuangHo Yin Edwin ChanHon-Cheong SoWai-Lung NgYamei TangWei-Jye LinVincent C. T. MokHo KoNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lei Zhao
Zhongqi Li
Joaquim S. L. Vong
Xinyi Chen
Hei-Ming Lai
Leo Y. C. Yan
Junzhe Huang
Samuel K. H. Sy
Xiaoyu Tian
Yu Huang
Ho Yin Edwin Chan
Hon-Cheong So
Wai-Lung Ng
Yamei Tang
Wei-Jye Lin
Vincent C. T. Mok
Ho Ko
Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
description Blood–brain barrier dysfunction occurs in ageing and in neurodegenerative diseases. Here, the authors use scRNA-seq to identify transcriptomic changes in endothelial cell subtypes in the aged mouse brain, some of which may generalize to human and can be reversed by treatment with a GLP-1R agonist.
format article
author Lei Zhao
Zhongqi Li
Joaquim S. L. Vong
Xinyi Chen
Hei-Ming Lai
Leo Y. C. Yan
Junzhe Huang
Samuel K. H. Sy
Xiaoyu Tian
Yu Huang
Ho Yin Edwin Chan
Hon-Cheong So
Wai-Lung Ng
Yamei Tang
Wei-Jye Lin
Vincent C. T. Mok
Ho Ko
author_facet Lei Zhao
Zhongqi Li
Joaquim S. L. Vong
Xinyi Chen
Hei-Ming Lai
Leo Y. C. Yan
Junzhe Huang
Samuel K. H. Sy
Xiaoyu Tian
Yu Huang
Ho Yin Edwin Chan
Hon-Cheong So
Wai-Lung Ng
Yamei Tang
Wei-Jye Lin
Vincent C. T. Mok
Ho Ko
author_sort Lei Zhao
title Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
title_short Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
title_full Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
title_fullStr Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
title_full_unstemmed Pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
title_sort pharmacologically reversible zonation-dependent endothelial cell transcriptomic changes with neurodegenerative disease associations in the aged brain
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/0cd6b88e4d0b4038b2b9807cac7e8608
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