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TRPM8 选择性配体的特性及其结构活性关系(SAR)。

Characterization of selective TRPM8 ligands and their structure activity response (S.A.R) relationship.

机构信息

National Center of Excellence in Molecular Biology, University of The Punjab, Lahore, Pakistan.

出版信息

J Pharm Pharm Sci. 2010;13(2):242-53. doi: 10.18433/j3n88n.

Abstract

PURPOSE

Transient receptor potential melastatin-8 (TRPM8) is an ion channel expressed extensively in sensory nerves, human prostate and overexpressed in a variety of cancers including prostate, breast, lung, colon and skin melanomas. It is activated by innoxious cooling and chemical stimuli. TRPM8 activation by cooling or chemical agonists is reported to induce profound analgesia in neuropathic pain conditions. Known TRPM8 agonists like menthol and icilin cross-activate other thermo-TRP channels like TRPV3 and TRPA1 and mutually inhibit TRPM8. This limits the usefulness of menthol and icilin as TRPM8 ligands. Consequently, the identification of selective and potent ligands for TRPM8 is of high relevance both in basic research and for therapeutic applications. In the present investigation, a group of menthol derivates was characterized. These ligands are selective and potent agonists of TRPM8. Interestingly they do not activate other thermo-TRPs like TRPA1, TRPV1, TRPV2, TRPV3 and TRPV4. These ion channels are also nociceptors and target of many inflammatory mediators.

METHODS

Investigations were performed in a recombinant system: Xenopus oocytes microinjected with cRNA of gene of interest were superfused with the test substances after initial responses of known standard agonists. Evoked currents were measured by two-electrode voltage clamp technique.

RESULTS

The newly characterized ligands possess an up to six-fold higher potency (EC50 in low microM) and an up to two-fold increase in efficacy compared to the parent compound menthol. In addition, it is found that chemical derivatives of menthol like CPS-368, CPS-369, CPS-125, WS-5 and WS-12 are the most selective ligands for TRPM8. The enhanced activity and selectivity seems to be conferred by hexacyclic ring structure present in all ligands as substances like WS-23 which lack this functional group activate TRPM8 with much lower potency (EC50 in mM) and those with pentacyclcic ring structure (furanone compounds) are totally inactive.

CONCLUSION

The new substances activate TRPM8 with a higher potency, efficacy and specificity than menthol and will thus be of importance for the development of pharmacological agents suitable for treatment and diagnosis of certain cancers and as analgesics. STATEMENT OF NOVELTY: The new compounds have an unmatched specificity for TRPM8 ion channels with additional display of high potency and efficacy. Thus these substances are better pharmacological tools for TRPM8 characterization then known compounds and it is suggested that these menthol-derivates may serve as model substances for the development of TRPM8 ligands.

摘要

目的

瞬时受体电位 melastatin-8(TRPM8)是一种广泛表达于感觉神经中的离子通道,在多种癌症中过度表达,包括前列腺癌、乳腺癌、肺癌、结肠癌和皮肤黑色素瘤。它被无害的冷却和化学刺激激活。据报道,TRPM8 的冷却或化学激动剂的激活可在神经病理性疼痛条件下引起深刻的镇痛。已知的 TRPM8 激动剂,如薄荷醇和异丁香酚,交叉激活其他热 TRP 通道,如 TRPV3 和 TRPA1,并相互抑制 TRPM8。这限制了薄荷醇和异丁香酚作为 TRPM8 配体的用途。因此,TRPM8 的选择性和有效配体的鉴定在基础研究和治疗应用中都具有重要意义。在本研究中,一组薄荷醇衍生物被表征。这些配体是 TRPM8 的选择性和有效激动剂。有趣的是,它们不激活其他热 TRP,如 TRPA1、TRPV1、TRPV2、TRPV3 和 TRPV4。这些离子通道也是伤害感受器,也是许多炎症介质的靶点。

方法

在重组系统中进行了研究:用感兴趣基因的 cRNA 微注射的非洲爪蟾卵母细胞,在用已知标准激动剂初步反应后用测试物质进行超灌流。通过双电极电压钳技术测量诱发电流。

结果

新表征的配体具有高达六倍的效力(低微摩尔 EC50)和高达两倍的效力增加,与母体化合物薄荷醇相比。此外,发现薄荷醇的化学衍生物,如 CPS-368、CPS-369、CPS-125、WS-5 和 WS-12,是 TRPM8 的最选择性配体。这种增强的活性和选择性似乎是由所有配体中存在的六环结构赋予的,因为缺乏该功能基团的物质,如 WS-23,激活 TRPM8 的效力要低得多(EC50 在 mM 范围内),而具有五环结构(呋喃酮化合物)的物质则完全没有活性。

结论

新物质激活 TRPM8 的效力、效力和特异性均高于薄荷醇,因此对于开发适用于某些癌症治疗和诊断以及作为镇痛药的药理学药物将非常重要。新颖性陈述:新化合物对 TRPM8 离子通道具有无与伦比的特异性,此外还具有高效力和效力。因此,与已知化合物相比,这些物质是 TRPM8 特征描述的更好的药理学工具,并且建议这些薄荷醇衍生物可用作 TRPM8 配体开发的模型物质。

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