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
1Institute of Medical Technology, Peking University Health Science Center, Beijing, China.
2Department of Radiology, Peking University Third Hospital, Beijing, China.
Aging Dis. 2023 Feb 1;14(1):219-228. doi: 10.14336/AD.2022.0609.
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-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.
大脑细胞外间隙(ECS)中物质的无障碍运输对于维持脑功能至关重要。调节运输是治疗与ECS阻塞相关脑部疾病的一种新策略,但迄今为止很少有技术被开发出来。在本研究中,我们建立了一种使用微创手术加速ECS中脑间质液(ISF)引流的新方法,即分离颈外动脉的一个分支并将其硬膜外植入(即硬膜外动脉植入术[EAI]),以促进额顶叶区域脑脊液(CSF)的脉动效应。基于示踪剂的磁共振成像用于评估EAI术后7天和15天大鼠ISF引流的变化。EAI显著加速了示踪ISF从尾状核到同侧皮质的引流。使用D映射技术证明ECS的体积分数和分子扩散率显著增加,这可能解释了脑ISF变化的潜在机制。本研究为通过脑ECS治疗脑病提供了新的视角。