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HUF-101,一种氟代大麻素衍生物的抗伤害作用。

Antinociceptive effects of HUF-101, a fluorinated cannabidiol derivative.

机构信息

Department of Pharmacology, School of Medicine of Ribeirao Preto, University of Sao Paulo, Brazil.

Department of Pharmacology, School of Medicine of Ribeirao Preto, University of Sao Paulo, Brazil.

出版信息

Prog Neuropsychopharmacol Biol Psychiatry. 2017 Oct 3;79(Pt B):369-377. doi: 10.1016/j.pnpbp.2017.07.012. Epub 2017 Jul 15.

Abstract

Cannabidiol (CBD) is a phytocannabinoid with multiple pharmacological effects and several potential therapeutic properties. Its low oral bioavailability, however, can limit its clinical use. Preliminary results indicate that fluorination of the CBD molecule increases its pharmacological potency. Here, we investigated whether HUF-101 (3, 10, and 30mg/kg), a fluorinated CBD analogue, would induce antinociceptive effects. HUF-101 effects were compared to those induced by CBD (10, 30, and 90mg/kg) and the cannabinoid CB receptor agonist WIN55,212-2 (1, 3, and 5mg/kg). These drugs were tested in male Swiss mice submitted to the following models predictive to antinociceptive drugs: hot plate, acetic acid-induced writhing, and carrageenan-induced inflammatory hyperalgesia. To evaluate the involvement of CB and CB receptors in HUF-101 and CBD effects, mice received the CB receptor antagonist AM251 (1 or 3mg/kg) or the CB receptor antagonist AM630 (1 or 3mg/kg) 30min before HUF-101, CBD, or WIN55,212-2. In the hot plate test, HUF-101 (30mg/kg) and WIN55,212-2 (5mg/kg) induced antinociceptive effects, which were attenuated by the pretreatment with AM251 and AM630. In the abdominal writhing test, CBD (30 and 90mg/kg), HUF-101 (30mg/kg), and WIN55,212-2 (3 and 5mg/kg) induced antinociceptive effects indicated by a reduction in the number of writhing. Whereas the pretreatment with AM630 did not mitigate the effects induced by any drug in this test, the pretreatment with AM251 attenuated the effect caused by WIN55,212-2. In the carrageenan-induced hyperalgesia test, CBD (30 and 90mg/kg), HUF-101 (3, 10 and 30mg/kg) and WIN55,212-2 (1mg/kg) decreased the intensity of mechanical hyperalgesia measured by the electronic von Frey method. The effects of all compounds were attenuated by the pretreatment with AM251 and AM630. Additionally, we evaluated whether HUF-101 would induce the classic cannabinoid CB receptor-mediated tetrad (hypolocomotion, catalepsy, hypothermia, and antinociception). Unlike WIN55,212-2, CBD and HUF-101 did not induce the cannabinoid tetrad. These findings show that HUF-101 produced antinociceptive effects at lower doses than CBD, indicating that the addition of fluoride improved its pharmacological profile. Furthermore, some of the antinociceptive effects of CBD and HUF-101 effects seem to involve the activation of CB and CB receptors.

摘要

大麻二酚 (CBD) 是一种具有多种药理作用和多种潜在治疗特性的植物大麻素。然而,其口服生物利用度低会限制其临床应用。初步结果表明,CBD 分子的氟化会增加其药理效力。在这里,我们研究了氟代大麻二酚类似物 HUF-101(3、10 和 30mg/kg)是否会诱导镇痛作用。HUF-101 的作用与 CBD(10、30 和 90mg/kg)和大麻素 CB 受体激动剂 WIN55,212-2(1、3 和 5mg/kg)诱导的作用进行了比较。这些药物在雄性瑞士小鼠中进行了测试,这些小鼠分别接受了以下模型的预测:热板、醋酸诱导的扭体和角叉菜胶诱导的炎症性痛觉过敏。为了评估 HUF-101 和 CBD 效应中 CB 和 CB 受体的参与,小鼠在接受 HUF-101、CBD 或 WIN55,212-2 之前 30 分钟接受了 CB 受体拮抗剂 AM251(1 或 3mg/kg)或 CB 受体拮抗剂 AM630(1 或 3mg/kg)。在热板试验中,HUF-101(30mg/kg)和 WIN55,212-2(5mg/kg)诱导镇痛作用,用 AM251 和 AM630 预处理可减弱其作用。在腹部扭体试验中,CBD(30 和 90mg/kg)、HUF-101(30mg/kg)和 WIN55,212-2(3 和 5mg/kg)诱导镇痛作用,表现为扭体次数减少。然而,用 AM630 预处理并不能减轻该试验中任何药物引起的作用,而用 AM251 预处理则减弱了 WIN55,212-2 引起的作用。在角叉菜胶诱导的痛觉过敏试验中,CBD(30 和 90mg/kg)、HUF-101(3、10 和 30mg/kg)和 WIN55,212-2(1mg/kg)降低了电子 von Frey 法测量的机械痛觉过敏的强度。所有化合物的作用均被 AM251 和 AM630 的预处理所减弱。此外,我们还评估了 HUF-101 是否会诱导经典大麻素 CB 受体介导的四联症(运动减少、僵住、体温过低和镇痛)。与 WIN55,212-2 不同,CBD 和 HUF-101 不会诱导大麻素四联症。这些发现表明,HUF-101 在较低剂量下产生镇痛作用,这表明氟的加入改善了其药理特性。此外,CBD 和 HUF-101 部分镇痛作用似乎涉及 CB 和 CB 受体的激活。

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