Cold allodynia, pain in response to cooling, occurs during or within hours of oxaliplatin infusion and is thought to arise from a direct effect of...
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[title] => An animal model of oxaliplatin-induced cold allodynia reveals a crucial role for
[paragraph] => An animal model of oxaliplatin-induced cold allodynia reveals a crucial role for Nav1.6 in peripheral pain pathways
[content] => Authors
Jennifer R. Deuis, Katharina Zimmermann, Andrej A. Romanovsky, et al.
Lab
University of Queenland, Australia
Journal
PAIN Volume 154, Issue 9
Abstract
Cold allodynia, pain in response to cooling, occurs during or within hours of oxaliplatin infusion and is thought to arise from a direct effect of oxaliplatin on peripheral sensory neurons. To characterize the pathophysiological mechanisms underlying acute oxaliplatin-induced cold allodynia, we established a new intraplantar oxaliplatin mouse model that rapidly developed long-lasting cold allodynia mediated entirely through tetrodotoxin-sensitive Nav pathways. Using selective inhibitors and knockout animals, we found that Nav1.6 was the key isoform involved, while thermosensitive transient receptor potential channels were not involved. Consistent with a crucial role for delayed-rectifier potassium channels in excitability in response to cold, intraplantar administration of the K+-channel blocker 4-aminopyridine mimicked oxaliplatin-induced cold allodynia and was also inhibited by Nav1.6 blockers. Intraplantar injection of the Nav1.6 activator Cn2 elicited spontaneous pain, mechanical allodynia, and enhanced 4-aminopyridine-induced cold allodynia. These findings provide behavioural evidence for a crucial role of Nav1.6 in multiple peripheral pain pathways including cold allodynia.
BIOSEB Instruments Used
Electronic Von Frey 4 (BIO-EVF4),Electronic Von Frey 5 with embedded camera (BIO-EVF5)
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Cet instrument électronique précis et simple d'utilisation est le test de référence pour vos recherches en analgésie, nociception, neuropathies et douleurs post-opératoires


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En tant que version électronique du classique esthésiomètre à filaments de Von Frey, la dernière évolution de l’instrument électronique Von Frey de Bioseb, conçu pour déterminer le seuil de sensibilité mécanique chez les rongeurs (rats et souris) par stimulation sous la patte, est un outil indispensable pour vos recherches sur l’hyperalgésie et l’allodynie. En mesurant et en enregistrant la force à laquelle l’animal présente un réflexe de retrait de la patte, il est possible d’étudier les pathologies liées à la réponse sensorielle ainsi qu’à l’hyper- ou l’hypoesthésie.
L'EVF5 intègre une caméra embarquée au niveau de la zone de stimulation et fonctionne avec un nouveau logiciel dédié révolutionnaire


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