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Reperfusion plus Selective Intra-arterial Cooling (SI-AC) Improve Recovery in a Nonhuman Primate Model of Stroke

  • Di Wu
  • , Yongjuan Fu
  • , Longfei Wu
  • , Mitchell Huber
  • , Jian Chen
  • , Tianqi Yao
  • , Mo Zhang
  • , Chuanjie Wu
  • , Ming Song
  • , Xiaoduo He
  • , Sijie Li
  • , Yongbiao Zhang
  • , Shengli Li
  • , Yuchuan Ding
  • , Xunming Ji*
  • *Corresponding author for this work
  • Capital Medical University
  • Beijing Key Laboratory of Hypoxia Conditioning Translational Medicine
  • Wayne State University
  • CAS - Institute of Automation

Research output: Contribution to journalArticlepeer-review

Abstract

Early reperfusion is increasingly prioritized in ischemic stroke care, but outcomes remain suboptimal. Therefore, there is an urgent need to find neuroprotective approaches that can be combined with reperfusion to maximize efficacy. Here, the neuroprotective mechanisms behind therapeutic hypothermia were evaluated in a monkey model of ischemic stroke. Focal ischemia was induced in adult rhesus monkeys by placing autologous clots in the middle cerebral artery. Monkeys were treated with tissue plasminogen activator (t-PA) alone or t-PA plus selective intra-arterial cooling (SI-AC). Serial MRI scans and functional deficit were evaluated after ischemia. Histopathology and immunohistochemistry analysis were performed after the final MRI scan. t-PA plus SI-AC treatment led to a higher rate of MRI tissue rescue, and significantly improved neurologic deficits and daily activity scores compared with t-PA alone. In peri-infarct areas, higher fractional anisotropy values and greater fiber numbers were observed in models receiving t-PA plus SI-AC. Histological findings indicated that myelin damage, spheroids, and spongiosis were significantly ameliorated in models receiving SI-AC treatment. White matter integrity was also improved by SI-AC based on immunochemical staining. Our study demonstrates that SI-AC can be effectively combined with t-PA to improve both structural and functional recovery in a monkey model of focal ischemia. These findings provide proof-of-concept that it may be feasible to add neuroprotective agents as adjunctive treatments to reperfusion therapy for stroke.

Original languageEnglish
Pages (from-to)1931-1939
Number of pages9
JournalNeurotherapeutics
Volume17
Issue number4
DOIs
StatePublished - Oct 2020

Keywords

  • Stroke
  • diffusion tensor imaging
  • hypothermia
  • recovery
  • rhesus monkey
  • white matter

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