Sex-related differences in cannabidiol's antinociceptive efficacy in a trigeminal neuralgia rodent model

大麻酚 伤害 痛觉超敏 小胶质细胞 药理学 医学 卡马西平 痛觉过敏 止痛药 麻醉 神经科学 内科学 生物 癫痫 炎症 受体 大麻 精神科
作者
Airam Nicole Vivanco-Estela,Sabine Borges da Rocha,Daniela Escobar-Espinal,Gabriela Gonçalves Bálico,Robert M. Caudle,Francisco Silveira Guimarães,Elaine Aparecida Del Bel,Glauce Crivelaro Nascimento
出处
期刊:Pain [Lippincott Williams & Wilkins]
卷期号:166 (10): e336-e350 被引量:2
标识
DOI:10.1097/j.pain.0000000000003616
摘要

Trigeminal neuralgia (TN) is a severe orofacial pain condition with sex-specific differences in pain responses. Standard treatments offer limited efficacy and significant side effects. We hypothesized that cannabidiol (CBD) alleviates TN-induced allodynia more effectively than carbamazepine in a sex- and dose-dependent manner through neuroimmune mechanisms, including modulation of glia, Fos protein expression, and oxidative stress in the ventrolateral periaqueductal gray (vlPAG) and spinal trigeminal nucleus caudalis (Sp5c). In an infraorbital nerve constriction model, mechanical allodynia was evaluated in male and female Wistar-Hannover rats. Our study demonstrates the potent antinociceptive effects of CBD in reducing mechanical allodynia in both male and female models of trigeminal neuralgia, without affecting locomotor activity, unlike carbamazepine. Although CBD's analgesic effects were consistent across sexes, carbamazepine showed sex-dependent efficacy. Cannabidiol's effects on Fos-B were region- and sex-dependent: it inhibited Fos-B in the Sp5c in both sexes but only in males in the vlPAG, suggesting sexually dimorphic activation of descendent pain circuits. Cannabidiol prevented superoxide oxidation in the vlPAG in both sexes, with effects on microglia and astrocytes at similar doses, suggesting that glial cells produce the oxidative stress inhibited by CBD. In the Sp5c, CBD modulated Fos-B, superoxide oxidation, microglia, and astrocytes in both sexes, indicating a possible lack of sexual dimorphism in this region. These results highlight CBD's efficacy in managing TN by modulating ascending and descending nociceptive pathways. Beyond its neuronal effects, CBD's analgesic actions in TN may also involve significant modulation of glial cell activity, underscoring the complexity of its therapeutic mechanisms.
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