Tiam1-mediated maladaptive plasticity underlying morphine tolerance and hyperalgesia

吗啡 痛觉过敏 医学 药物耐受性 伤害 慢性疼痛 类阿片 神经科学 药理学 神经病理性疼痛 突触可塑性 神经可塑性 麻醉 内科学 受体 心理学
作者
Changqun Yao,Xing Fang,Qin Ru,Wei Li,Jun Li,Zeinab Mehsein,Kimberley F. Tolias,Lingyong Li
出处
期刊:Brain [Oxford University Press]
卷期号:147 (7): 2507-2521 被引量:1
标识
DOI:10.1093/brain/awae106
摘要

Opioid pain medications, such as morphine, remain the mainstay for treating severe and chronic pain. Prolonged morphine use, however, triggers analgesic tolerance and hyperalgesia (OIH), which can last for a long period after morphine withdrawal. How morphine induces these detrimental side effects remains unclear. Here, we show that morphine tolerance and OIH are mediated by Tiam1-coordinated synaptic structural and functional plasticity in the spinal nociceptive network. Tiam1 is a Rac1 GTPase guanine nucleotide exchange factor that promotes excitatory synaptogenesis by modulating actin cytoskeletal dynamics. We found that prolonged morphine treatment activated Tiam1 in the spinal dorsal horn and Tiam1 ablation from spinal neurons eliminated morphine antinociceptive tolerance and OIH. At the same time, the pharmacological blockade of Tiam1-Rac1 signalling prevented the development and reserved the established tolerance and OIH. Prolonged morphine treatment increased dendritic spine density and synaptic NMDA receptor activity in spinal dorsal horn neurons, both of which required Tiam1. Furthermore, co-administration of the Tiam1 signalling inhibitor NSC23766 was sufficient to abrogate morphine tolerance in chronic pain management. These findings identify Tiam1-mediated maladaptive plasticity in the spinal nociceptive network as an underlying cause for the development and maintenance of morphine tolerance and OIH and provide a promising therapeutic target to reduce tolerance and prolong morphine use in chronic pain management.

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