Nylon filament coated with paraffin for intraluminal permanent middle cerebral artery occlusion in rats

Xia-Lin Zuo1, Ping Wu, Ai-Min Ji

  • 1Center for Drug Research and Development, Zhujiang Hospital, Southern Medical University, Guangzhou 510282, PR China.

Insights

Paraffin-coated nylon filaments improve middle cerebral artery occlusion (MCAO) models in rats. This enhanced method increases reproducibility and success rates, leading to more reliable stroke research.

Area of Science:

  • Neuroscience
  • Animal Models
  • Cerebrovascular Research

Background:

  • Middle cerebral artery occlusion (MCAO) models in rats are crucial for stroke research.
  • Variability in lesion extent and reproducibility exists with traditional uncoated nylon filaments.
  • Filament properties significantly influence MCAO model outcomes.

Purpose of the Study:

  • To evaluate the efficacy of paraffin-coated nylon filaments in rat MCAO models.
  • To compare paraffin-coated versus uncoated nylon filaments for MCAO induction.
  • To assess improvements in model consistency, success rates, and animal welfare.

Main Methods:

  • Forty male Sprague-Dawley rats were randomized into uncoated MCAO (uMCAO) and paraffin-coated MCAO (cMCAO) groups.
  • Control groups included normal and sham procedures.
  • Outcomes assessed: mortality, model success, neurological deficits, and infarct volume via TTC staining.

Main Results:

  • The paraffin-coated nylon filament group (cMCAO) exhibited no mortality within 12 hours, unlike the uncoated group (uMCAO).
  • cMCAO showed a lower model success rate (55%) compared to uMCAO (100%), with exclusions due to subarachnoid hemorrhage.
  • Neurological deficit scores and infarct volumes were significantly larger in the cMCAO group (p<0.05), indicating more severe and consistent MCAO.

Conclusions:

  • Paraffin-coated nylon filaments provide superior middle cerebral artery occlusion compared to uncoated filaments.
  • This method enhances model consistency and increases the success rate of MCAO induction.
  • Utilizing paraffin-coated filaments reduces experimental animal numbers and improves reproducibility in stroke research.

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