大麻中的萜类化合物通过激活腺苷 A2A 受体诱导慢性神经性疼痛小鼠模型的抗痛作用。

IF 5.9 1区 医学 Q1 ANESTHESIOLOGY PAIN® Pub Date : 2024-11-01 Epub Date: 2024-05-02 DOI:10.1097/j.pain.0000000000003265
Abigail M Schwarz, Attila Keresztes, Thai Bui, Ryan Hecksel, Adrian Peña, Brianna Lent, Zhan-Guo Gao, Martín Gamez-Rivera, Caleb A Seekins, Kerry Chou, Taylor L Appel, Kenneth A Jacobson, Fahad A Al-Obeidi, John M Streicher
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引用次数: 0

摘要

摘要:萜烯是一种小型碳氢化合物,能赋予包括大麻在内的许多植物香气和味道。许多研究表明,萜烯类化合物可以缓解人类和动物的各种疼痛状态。然而,这些研究在方法上都很有限,而且很少能确定其作用机制。在之前的研究中,我们发现萜烯类化合物香叶醇、芳樟醇、β-蒎烯、α-胡麻烯和β-石竹烯通过多个受体靶点产生大麻拟行为效应。因此,我们扩展了这项工作,在慢性疼痛小鼠模型中探索这些大麻萜烯潜在的抗痛觉作用和机制。我们首先通过向化疗诱发周围神经病变(CIPN)或脂多糖诱发炎症性疼痛小鼠模型的雄性和雌性 CD-1 小鼠注射萜类化合物(200 毫克/千克,IP)来测试其抗痛性,结果发现萜类化合物产生的抗痛性与 10 毫克/千克吗啡或 3.2 毫克/千克 WIN55,212 大致相同。我们还发现,通过条件性位置偏好来衡量,没有一种萜类化合物能产生奖赏,而低剂量的萜类化合物(100 毫克/千克)与吗啡(3.2 毫克/千克)联合使用能产生比单独使用更强的抗痛作用。然后,我们使用腺苷 A2A 受体(A2AR)选择性拮抗剂异曲菲林(3.2 mg/kg,IP)和脊髓特异性 CRISPR 敲除 A2AR,以确定萜烯在 CIPN 中的抗痛觉机制。体外 cAMP 和结合研究以及硅学建模研究进一步表明,萜类化合物是 A2AR 激动剂。这些研究共同确定了大麻萜类化合物是治疗慢性神经病理性疼痛的潜在疗法,并确定了这种活性的受体机制。
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Terpenes from Cannabis sativa induce antinociception in a mouse model of chronic neuropathic pain via activation of adenosine A 2A receptors.

Abstract: Terpenes are small hydrocarbon compounds that impart aroma and taste to many plants, including Cannabis sativa . A number of studies have shown that terpenes can produce pain relief in various pain states in both humans and animals. However, these studies were methodologically limited and few established mechanisms of action. In our previous work, we showed that the terpenes geraniol, linalool, β-pinene, α-humulene, and β-caryophyllene produced cannabimimetic behavioral effects via multiple receptor targets. We thus expanded this work to explore the potential antinociception and mechanism of these Cannabis terpenes in a mouse model of chronic pain. We first tested for antinociception by injecting terpenes (200 mg/kg, IP) into male and female CD-1 mice with mouse models of chemotherapy-induced peripheral neuropathy (CIPN) or lipopolysaccharide-induced inflammatory pain, finding that the terpenes produced roughly equal antinociception to 10 mg/kg morphine or 3.2 mg/kg WIN55,212. We further found that none of the terpenes produced reward as measured by conditioned place preference, while low doses of terpene (100 mg/kg) combined with morphine (3.2 mg/kg) produced enhanced antinociception vs either alone. We then used the adenosine A 2A receptor (A 2A R) selective antagonist istradefylline (3.2 mg/kg, IP) and spinal cord-specific CRISPR knockdown of the A 2A R to identify this receptor as the mechanism for terpene antinociception in CIPN. In vitro cAMP and binding studies and in silico modeling studies further suggested that the terpenes act as A 2A R agonists. Together these studies identify Cannabis terpenes as potential therapeutics for chronic neuropathic pain and identify a receptor mechanism for this activity.

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来源期刊
PAIN®
PAIN® 医学-临床神经学
CiteScore
12.50
自引率
8.10%
发文量
242
审稿时长
9 months
期刊介绍: PAIN® is the official publication of the International Association for the Study of Pain and publishes original research on the nature,mechanisms and treatment of pain.PAIN® provides a forum for the dissemination of research in the basic and clinical sciences of multidisciplinary interest.
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