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Chemotherapy-induced peripheral neuropathy (CIPN) is a type of sensory neuropathy. It is a common side effect of chemotherapy treatment and is especially prevalent with taxane and platinum-based drugs1,2. Some symptoms of CIPN include chronic pain, numbness, tingling, and extreme sensitivity to touch and temperature1,2. These painful symptoms not only interfere with a patient's day-to-day life but also their cancer treatment. Some cancer patients seek a reduction in dosage or a complete termination of chemotherapy to be able to manage the decrease in quality of life associated with this syndrome3. Currently, the common clinically used treatments for CIPN are incompletely effective at symptomatic relief and include opioids, which pose significant abuse potential4. There is no cure for CIPN to date, therefore, finding a safe and effective alternative is essential5,6.
Cannabidiol (CBD) has previously been shown to have efficacy at preventing the development of CIPN as modeled in mice7,8. This demonstrates a promising pathway for avoiding the potentially long-term allodynic symptoms of CIPN for patients without the need for relief via equivocally effective drugs or potentially harmful opioids. The majority of people using CBD, especially for therapeutic purposes like managing seizures, experience mild side effects, and the drug is generally well-tolerated9. Most adverse effects are dose-dependent and often improve as the body adjusts.
In this widely used model of CIPN10, rats are administered paclitaxel to induce neuropathy, which recapitulates the allodynic phenotype observed in some patients after chemotherapeutic intervention, as reported previously11. The goal of this induction is to have a translationally relevant platform for evaluating this type of sensory neuropathy in vivo, which is suitable for researchers investigating mechanisms or interventions for this syndrome. Mechanical sensitivity is measured using the von Frey test, and cold temperature challenges are used to measure thermal sensitivity10,11. This allows for the quantitation of the prophylactic potential of CBD in mitigating CIPN at the two most clinically important quality-of-life endpoints for patients. Further evaluation included high-speed videography-assisted analysis of nocifensive behaviors12,13. This expanded analysis of behavioral responses to innocuous and noxious stimuli allows for the differentiation between allodynic and hyperalgesic effects of chemotherapy administration, as well as the ability of CBD to modulate these effects.
This protocol describes how to induce the CIPN phenotype, assess and quantify mechanical and thermal hypersensitivity in rats, and apply videography for an unbiased and more granular evaluation of allodynia and hyperalgesia.