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异恶唑衍生物作为有效的瞬时受体电位 melastatin 型 8(TRPM8)激动剂。

Isoxazole derivatives as potent transient receptor potential melastatin type 8 (TRPM8) agonists.

机构信息

Department of Pharmacy, University of Naples Federico II, Via D. Montesano 49, 80131 Naples, Italy.

出版信息

Eur J Med Chem. 2013 Nov;69:659-69. doi: 10.1016/j.ejmech.2013.08.056. Epub 2013 Sep 20.

Abstract

Modulation of the transient receptor potential melastatin type-8 (TRPM8), the receptor for menthol acting as the major sensor for peripheral innocuous cool temperatures, has several important applications in pharmaceutical, food and cosmetic industries. In the present study, we designed 12 isoxazole derivatives and tested their pharmacological properties both in F11 sensory neurons in vitro, and in an in vivo model of cold allodynia. In F11 sensory neurons, single-cell Ca(2+)-imaging experiments revealed that, when compared to menthol, some newly-synthesized compounds were up to 200-fold more potent, though none of them showed an increased efficacy. Some isoxazole derivatives potentiated allodynic responses elicited by acetone when administered to rats subjected to sciatic nerve ligation; when compared to menthol, these compounds were efficacious at earlier (0-2 min) but not later (7-9 or 14-16 min) time points. Docking experiments performed in a human TRPM8 receptor model revealed that newly-synthesized compounds might adopt two possible conformations, thereby allowing to distinguish "menthol-like" compounds (characterized by high efficacy/low potency), and "icillin-like" compounds (with high potency/low efficacy). Collectively, these data provide rationale structure-activity relationships for isoxazole derivatives acting as TRPM8 agonists, and suggest their potential usefulness for cold-evoked analgesia.

摘要

瞬时受体电位 melastatin 型 8(TRPM8)的调制,薄荷醇的受体,作为外周无害冷温度的主要传感器,在制药、食品和化妆品行业有几个重要的应用。在本研究中,我们设计了 12 种异恶唑衍生物,并在体外 F11 感觉神经元和冷感觉过敏的体内模型中测试了它们的药理学特性。在 F11 感觉神经元中,单细胞 Ca(2+)成像实验表明,与薄荷醇相比,一些新合成的化合物的效力高达 200 倍,尽管它们都没有增加功效。一些异恶唑衍生物在坐骨神经结扎的大鼠中增强了由丙酮引起的感觉过敏反应;与薄荷醇相比,这些化合物在早期(0-2 分钟)有效,但在晚期(7-9 分钟或 14-16 分钟)无效。在人类 TRPM8 受体模型中进行的对接实验表明,新合成的化合物可能采用两种可能的构象,从而可以区分“薄荷醇样”化合物(具有高功效/低效力)和“icillin 样”化合物(具有高效力/低功效)。总的来说,这些数据为作为 TRPM8 激动剂的异恶唑衍生物提供了合理的构效关系,并表明它们在冷诱发镇痛方面的潜在用途。

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