Neural Selective Cryoneurolysis with Ice Slurry Injection in a Rat Model
Селективная нейрокриолизисная деструкция с инъекцией ледяной суспензии в модели на крысах
2020-01-16
SCID: 54.1/dy7dxp9p
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ice slurry injectionmyelin sheath disruptionpostoperative analgesiasciatic nerveselective cryoneurolysis
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Abstract (AI)
BACKGROUND: Postoperative pain caused by trauma to nerves and tissue around the surgical site is a major problem. Perioperative steps to reduce postoperative pain include local anesthetics and opioids, the latter of which are addictive and have contributed to the opioid epidemic. Cryoneurolysis is a nonopioid and long-lasting treatment for reducing postoperative pain. However, current methods of cryoneurolysis are invasive, technically demanding, and are not tissue-selective. This project aims to determine whether ice slurry can be used as a novel, injectable, drug-free, and tissue-selective method of cryoneurolysis and resulting analgesia. METHODS: The authors developed an injectable and selective method of cryoneurolysis using biocompatible ice slurry, using rat sciatic nerve to investigate the effect of slurry injection on the structure and function of the nerve. Sixty-two naïve, male Sprague-Dawley rats were used in this study. Advanced Coherent anti-Stokes Raman Scattering microscopy, light, and fluorescent microscopy imaging were used at baseline and at various time points after treatment for evaluation and quantification of myelin sheath and axon structural integrity. Validated motor and sensory testing were used for evaluating the sciatic nerve function in response to ice slurry treatment. RESULTS: Ice slurry injection can selectively target the rat sciatic nerve. Being injectable, it can infiltrate around the nerve. The authors demonstrate that a single injection is safe and selective for reversibly disrupting the myelin sheaths and axon density, with complete structural recovery by day 112. This leads to decreased nocifensive function for up to 60 days, with complete recovery by day 112. There was up to median [interquartile range]: 68% [60 to 94%] reduction in mechanical pain response after treatment. CONCLUSIONS: Ice slurry injection selectively targets the rat sciatic nerve, causing no damage to surrounding tissue. Injection of ice slurry around the rat sciatic nerve induced decreased nociceptive response from the baseline through neural selective cryoneurolysis.
Key Findings
1
A single ice-slurry injection reversibly disrupted myelin sheaths and reduced axon density, with complete structural recovery by day 112.
2
An injectable, biocompatible ice slurry selectively targeted the rat sciatic nerve and infiltrated around it without damaging surrounding tissue.
3
Mechanical pain responses decreased by up to a median of 68% after treatment, with an interquartile range of 60–94%.
4
The method provides a drug-free, tissue-selective, and less invasive approach to cryoneurolysis in a rat model.
5
Treatment decreased nocifensive function for up to 60 days, with complete functional recovery by day 112.
Research Object
rat sciatic nerve treated with injectable biocompatible ice slurry
Research Subject
selective and reversible disruption and recovery of myelin sheath and axon structure, and the resulting sciatic nerve functional analgesic response
Publication Details
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2020-01-16
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