TY - JOUR
T1 - Selective intra-arterial brain cooling improves long-term outcomes in a non-human primate model of embolic stroke
T2 - Efficacy depending on reperfusion status
AU - Wu, Di
AU - Chen, Jian
AU - Hussain, Mohammed
AU - Wu, Longfei
AU - Shi, Jingfei
AU - Wu, Chuanjie
AU - Ma, Yanhui
AU - Zhang, Mo
AU - Yang, Qi
AU - Fu, Yongjuan
AU - Duan, Yunxia
AU - Ma, Cui
AU - Yan, Feng
AU - Zhu, Zixin
AU - He, Xiaoduo
AU - Yao, Tianqi
AU - Song, Ming
AU - Zhi, Xinglong
AU - Wang, Chunxiu
AU - Cai, Lipeng
AU - Li, Chuanhui
AU - Li, Shengli
AU - Zhang, Yongbiao
AU - Ding, Yuchuan
AU - Ji, Xunming
N1 - Publisher Copyright:
© The Author(s) 2020.
PY - 2020/7/1
Y1 - 2020/7/1
N2 - Nearly all stroke neuroprotection modalities, including selective intra-arterial cooling (SI-AC), have failed to be translated from bench to bed side. Potentially overlooked reasons may be biological gaps, inadequate attention to reperfusion states and mismatched attention to neurological benefits. To advance stroke translation, we describe a novel thrombus-based stroke model in adult rhesus macaques. Intra-arterial thrombolysis with tissue plasminogen activator leads to three clinically relevant outcomes – complete, partial, and no recanalization based on digital subtraction angiography. We also find reperfusion as a prerequisite for SI-AC-induced benefits, in which models with complete or partial reperfusion exhibit significantly reduced infarct volumes, mitigated neurological deficits, improved upper limb motor dysfunction in both acute and chronic stages; however, no further neuroprotection is observed in those without reperfusion. In summary, we discover reperfusion as a crucial regulator of SI-AC-induced neuroprotection and provide insights of long-term functional benefits in behavior and imaging levels. Our findings could be important not only for the translational prerequisite and potential molecular targets, but also for this thrombus-thrombolysis model in monkeys as a powerful tool for further translational stroke studies.
AB - Nearly all stroke neuroprotection modalities, including selective intra-arterial cooling (SI-AC), have failed to be translated from bench to bed side. Potentially overlooked reasons may be biological gaps, inadequate attention to reperfusion states and mismatched attention to neurological benefits. To advance stroke translation, we describe a novel thrombus-based stroke model in adult rhesus macaques. Intra-arterial thrombolysis with tissue plasminogen activator leads to three clinically relevant outcomes – complete, partial, and no recanalization based on digital subtraction angiography. We also find reperfusion as a prerequisite for SI-AC-induced benefits, in which models with complete or partial reperfusion exhibit significantly reduced infarct volumes, mitigated neurological deficits, improved upper limb motor dysfunction in both acute and chronic stages; however, no further neuroprotection is observed in those without reperfusion. In summary, we discover reperfusion as a crucial regulator of SI-AC-induced neuroprotection and provide insights of long-term functional benefits in behavior and imaging levels. Our findings could be important not only for the translational prerequisite and potential molecular targets, but also for this thrombus-thrombolysis model in monkeys as a powerful tool for further translational stroke studies.
KW - Middle cerebral artery occlusion
KW - hypothermia
KW - reperfusion
KW - rhesus monkey
KW - tissue plasminogen activator
UR - https://www.scopus.com/pages/publications/85081970244
U2 - 10.1177/0271678X20903697
DO - 10.1177/0271678X20903697
M3 - 文章
C2 - 32126876
AN - SCOPUS:85081970244
SN - 0271-678X
VL - 40
SP - 1415
EP - 1426
JO - Journal of Cerebral Blood Flow and Metabolism
JF - Journal of Cerebral Blood Flow and Metabolism
IS - 7
ER -