Chen Yanming, Xiao Xinyi, Huang Chaonan, Zhu Jin, Zhou Huiling, Qin Huimin, Bao Yu, Zhuang Tao, Zhang Guisen
Jiangsu Key Laboratory of Marine Biological Resources and Environment, Jiangsu Key Laboratory of Marine Pharmaceutical Compound Screening, School of Pharmacy, Jiangsu Ocean University, Lianyungang, 222005, China.
Co-Innovation Center of Jiangsu Marine Bio-industry Technology, Jiangsu Ocean University, Lianyungang, 222005, China.
Psychopharmacology (Berl). 2023 Apr;240(4):881-897. doi: 10.1007/s00213-023-06329-3. Epub 2023 Feb 8.
Drug combinations are commonly used in pain management, which can produce potent analgesic effects with reduced dosage and adverse effects.
This study was designed to evaluate the anti-nociceptive effects and adverse effects of new combinations of flupirtine (a Kv7 potassium channel opener) and antihistamines (promethazine, fexofenadine) on acute and chronic pain in mice, and the possible mechanisms behind the synergistic analgesic effects were preliminarily investigated.
In acetic acid writhing test, carrageenan-induced inflammatory pain model, and paclitaxel-induced neuropathic pain model, the interaction indexes (γ) between flupirtine and antihistamines were determined by isobolographic analysis. Furthermore, the Kv7 channel blocker XE991 was used to determine whether the effects of single agents and drug combinations on paclitaxel- and carrageenan-induced mechanical allodynia were mediated by Kv7 channels. Finally, hepatotoxicity markers, liver histopathology, and the rotarod test were used to investigate the adverse effects of drugs in combination doses.
The interaction indexes of flupirtine-promethazine and flupirtine-fexofenadine in all the above three pain models were lower than 1. The analgesic effects of flupirtine (13 mg/kg), promethazine (5 mg/kg), fexofenadine (20 mg/kg), and their combinations were antagonized significantly by XE991 (3 mg/kg). And the adverse effects of flupirtine and antihistamines in combination doses were not significantly different from the vehicle group.
Flupirtine and antihistamines produced synergistic analgesic effects in all the above pain models. The analgesic effects of antihistamines were partially mediated by Kv7/M channels, and the activation of Kv7/M channels may be partly responsible for the synergistic analgesic effects between flupirtine and antihistamines.
药物组合常用于疼痛管理,可在减少剂量和不良反应的情况下产生强效镇痛效果。
本研究旨在评估氟吡汀(一种Kv7钾通道开放剂)与抗组胺药(异丙嗪、非索非那定)新组合对小鼠急性和慢性疼痛的抗伤害感受作用及不良反应,并初步探讨协同镇痛作用背后的可能机制。
在醋酸扭体试验、角叉菜胶诱导的炎性疼痛模型和紫杉醇诱导的神经病理性疼痛模型中,通过等效应线图分析法确定氟吡汀与抗组胺药之间的相互作用指数(γ)。此外,使用Kv7通道阻滞剂XE991来确定单药及药物组合对紫杉醇和角叉菜胶诱导的机械性异常性疼痛的作用是否由Kv7通道介导。最后,使用肝毒性标志物、肝脏组织病理学和转棒试验来研究联合剂量药物的不良反应。
在上述三种疼痛模型中,氟吡汀-异丙嗪和氟吡汀-非索非那定的相互作用指数均低于1。XE991(3mg/kg)可显著拮抗氟吡汀(13mg/kg)、异丙嗪(5mg/kg)、非索非那定(20mg/kg)及其组合的镇痛作用。氟吡汀和抗组胺药联合剂量的不良反应与溶剂对照组无显著差异。
氟吡汀和抗组胺药在上述所有疼痛模型中均产生协同镇痛作用。抗组胺药的镇痛作用部分由Kv7/M通道介导,Kv7/M通道的激活可能部分解释了氟吡汀和抗组胺药之间的协同镇痛作用。