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Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid

Unhindered transportation of substances in the brain extracellular space (ECS) is essential for maintaining brain function. Regulation of transportation is a novel strategy for treating ECS blockage-related brain diseases, but few techniques have been developed to date. In this study, we established...

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Autores principales: Cai, Xianjie, He, Qingyuan, Wang, Wei, Li, Chunlin, Wang, Hui, Yin, Feng, Li, Tong, Kong, Dongsheng, Jia, Yanxing, Li, Hongfeng, Yan, Junhao, Wei, Xunbin, Ren, Qiushi, Gao, Yajuan, Yang, Shuangfeng, Tong, Huaiyu, Peng, Yun, Han, Hongbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937704/
https://www.ncbi.nlm.nih.gov/pubmed/36818558
http://dx.doi.org/10.14336/AD.2022.0609
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author Cai, Xianjie
He, Qingyuan
Wang, Wei
Li, Chunlin
Wang, Hui
Yin, Feng
Li, Tong
Kong, Dongsheng
Jia, Yanxing
Li, Hongfeng
Yan, Junhao
Wei, Xunbin
Ren, Qiushi
Gao, Yajuan
Yang, Shuangfeng
Tong, Huaiyu
Peng, Yun
Han, Hongbin
author_facet Cai, Xianjie
He, Qingyuan
Wang, Wei
Li, Chunlin
Wang, Hui
Yin, Feng
Li, Tong
Kong, Dongsheng
Jia, Yanxing
Li, Hongfeng
Yan, Junhao
Wei, Xunbin
Ren, Qiushi
Gao, Yajuan
Yang, Shuangfeng
Tong, Huaiyu
Peng, Yun
Han, Hongbin
author_sort Cai, Xianjie
collection PubMed
description Unhindered transportation of substances in the brain extracellular space (ECS) is essential for maintaining brain function. Regulation of transportation is a novel strategy for treating ECS blockage-related brain diseases, but few techniques have been developed to date. In this study, we established a novel approach for accelerating the drainage of brain interstitial fluid (ISF) in the ECS using minimally invasive surgery, in which a branch of the external carotid artery is separated and implanted epidurally (i.e., epidural arterial implantation [EAI]) to promote a pulsation effect on cerebrospinal fluid (CSF) in the frontoparietal region. Tracer-based magnetic resonance imaging was used to evaluate the changes in ISF drainage in rats 7 and 15 days post-EAI. The drainage of the traced ISF from the caudate nucleus to ipsilateral cortex was significantly accelerated by EAI. Significant increases in the volume fraction of the ECS and molecular diffusion rate were demonstrated using the D(ECS)-mapping technique, which may account for the mechanisms underlying the changes in brain ISF. This study provides a novel perspective for encephalopathy treatment via the brain ECS.
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spelling pubmed-99377042023-02-18 Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid Cai, Xianjie He, Qingyuan Wang, Wei Li, Chunlin Wang, Hui Yin, Feng Li, Tong Kong, Dongsheng Jia, Yanxing Li, Hongfeng Yan, Junhao Wei, Xunbin Ren, Qiushi Gao, Yajuan Yang, Shuangfeng Tong, Huaiyu Peng, Yun Han, Hongbin Aging Dis Original Article Unhindered transportation of substances in the brain extracellular space (ECS) is essential for maintaining brain function. Regulation of transportation is a novel strategy for treating ECS blockage-related brain diseases, but few techniques have been developed to date. In this study, we established a novel approach for accelerating the drainage of brain interstitial fluid (ISF) in the ECS using minimally invasive surgery, in which a branch of the external carotid artery is separated and implanted epidurally (i.e., epidural arterial implantation [EAI]) to promote a pulsation effect on cerebrospinal fluid (CSF) in the frontoparietal region. Tracer-based magnetic resonance imaging was used to evaluate the changes in ISF drainage in rats 7 and 15 days post-EAI. The drainage of the traced ISF from the caudate nucleus to ipsilateral cortex was significantly accelerated by EAI. Significant increases in the volume fraction of the ECS and molecular diffusion rate were demonstrated using the D(ECS)-mapping technique, which may account for the mechanisms underlying the changes in brain ISF. This study provides a novel perspective for encephalopathy treatment via the brain ECS. JKL International LLC 2023-02-01 /pmc/articles/PMC9937704/ /pubmed/36818558 http://dx.doi.org/10.14336/AD.2022.0609 Text en copyright: © 2022 Cai et al. https://creativecommons.org/licenses/by/2.0/this is an open access article distributed under the terms of the creative commons attribution license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Original Article
Cai, Xianjie
He, Qingyuan
Wang, Wei
Li, Chunlin
Wang, Hui
Yin, Feng
Li, Tong
Kong, Dongsheng
Jia, Yanxing
Li, Hongfeng
Yan, Junhao
Wei, Xunbin
Ren, Qiushi
Gao, Yajuan
Yang, Shuangfeng
Tong, Huaiyu
Peng, Yun
Han, Hongbin
Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title_full Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title_fullStr Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title_full_unstemmed Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title_short Epidural Pulsation Accelerates the Drainage of Brain Interstitial Fluid
title_sort epidural pulsation accelerates the drainage of brain interstitial fluid
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9937704/
https://www.ncbi.nlm.nih.gov/pubmed/36818558
http://dx.doi.org/10.14336/AD.2022.0609
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