TY - JOUR
T1 - A novel neuroprotective method against ischemic stroke by accelerating the drainage of brain interstitial fluid
AU - Lian, Jingge
AU - Yang, Liu
AU - Tan, Hanbo
AU - Su, Shaoyi
AU - Serrano Lopes, Leonor
AU - Cheng, Fangxiao
AU - Yan, Junhao
AU - Fu, Yu
AU - Fu, Wanyi
AU - Xie, Zhaoheng
AU - Sun, Jianfei
AU - Zhang, Jicong
AU - Tong, Zhiqian
AU - Gao, Yajuan
AU - Han, Hongbin
N1 - Publisher Copyright:
© Science China Press 2024.
PY - 2024/10
Y1 - 2024/10
N2 - Ischemic stroke is a leading cause of death and disability worldwide. Inflammatory response after stroke determines the outcome of ischemic injury. A recent study has reported an efficient method, epidural arterial implantation (EAI), for accelerating interstitial fluid (ISF) drainage, which provides a promising strategy to clear pro-inflammatory cytokines in the brain extracellular space (ECS). In this study, the method of EAI was modified (m-EAI) to control its function of accelerating the ISF drainage at different time points following ischemic attack. The neuroprotective effect of m-EAI on ischemic stroke was evaluated with the transient middle cerebral artery occlusion (tMCAO) rat model. The results demonstrated the accumulation of IL-1β, IL-6, and TNF-α was significantly decreased by activating m-EAI at 7 d before and immediately after ischemic attack in tMCAO rats, accompanied with decreased infarct volume and improved neurological function. This study consolidates the hypothesis of exacerbated ischemic damage by inflammatory response and provides a new perspective to treat encephalopathy via brain ECS. Further research is essential to investigate whether m-EAI combined with neuroprotective drugs could enhance the therapeutic effect on ischemic stroke.
AB - Ischemic stroke is a leading cause of death and disability worldwide. Inflammatory response after stroke determines the outcome of ischemic injury. A recent study has reported an efficient method, epidural arterial implantation (EAI), for accelerating interstitial fluid (ISF) drainage, which provides a promising strategy to clear pro-inflammatory cytokines in the brain extracellular space (ECS). In this study, the method of EAI was modified (m-EAI) to control its function of accelerating the ISF drainage at different time points following ischemic attack. The neuroprotective effect of m-EAI on ischemic stroke was evaluated with the transient middle cerebral artery occlusion (tMCAO) rat model. The results demonstrated the accumulation of IL-1β, IL-6, and TNF-α was significantly decreased by activating m-EAI at 7 d before and immediately after ischemic attack in tMCAO rats, accompanied with decreased infarct volume and improved neurological function. This study consolidates the hypothesis of exacerbated ischemic damage by inflammatory response and provides a new perspective to treat encephalopathy via brain ECS. Further research is essential to investigate whether m-EAI combined with neuroprotective drugs could enhance the therapeutic effect on ischemic stroke.
KW - brain extracellular space
KW - interstitial fluid
KW - ischemic stroke
KW - modified epidural arterial implantation
UR - https://www.scopus.com/pages/publications/85200995648
U2 - 10.1007/s11427-024-2592-4
DO - 10.1007/s11427-024-2592-4
M3 - 文章
C2 - 39115728
AN - SCOPUS:85200995648
SN - 1674-7305
VL - 67
SP - 2213
EP - 2223
JO - Science China Life Sciences
JF - Science China Life Sciences
IS - 10
ER -