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抑制[3H]树脂毒素与大鼠背根神经节膜的结合作为评估具有辣椒素样活性化合物的新方法。

Inhibition of [3H]resiniferatoxin binding to rat dorsal root ganglion membranes as a novel approach in evaluating compounds with capsaicin-like activity.

作者信息

Szallasi A, Szolcsanyi J, Szallasi Z, Blumberg P M

机构信息

Molecular Mechanisms of Tumor Promotion Section, National Cancer Institute, Bethesda, MD 20892.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1991 Nov;344(5):551-6. doi: 10.1007/BF00170651.

Abstract

We have recently reported the specific binding of [3H]resiniferatoxin to sensory ganglion membranes; this binding appears to represent the postulated vanilloid (capsaicin) receptor. In the present report, we compare the structure/activity relations for binding to rat dorsal root ganglion membranes and for biological responses in the rat, using a series of vanilloids of the capsaicin (homovanilloyl-decylamide, homovanilloyl-dodecylamide, homovanilloyl-cyclododecylamide, homovanilloyl-hexadecylamide, homovanilloyl-piperidine and nonenoyl-homoveratrylamide) and resiniferatoxin (tinyatoxin, 12-deoxyphorbol 13-phenylacetate 20-homovanillate) classes. We find that all the tested biologically active vanilloids, but not the inactive structure analogs, compete for the [3H]resiniferatoxin binding sites in rat dorsal root ganglion membranes, and we conclude that the [3H]resiniferatoxin binding assay may provide an efficient approach for evaluating such compounds. We also provide evidence that the [3H]resiniferatoxin receptor is likely to recognize vanilloids which are inserted into the membranes; and that the apparent activity of capsaicinoids may be significantly influenced by factors other than equilibrium binding affinities.

摘要

我们最近报道了[3H]树脂毒素与感觉神经节膜的特异性结合;这种结合似乎代表了假定的香草酸(辣椒素)受体。在本报告中,我们使用一系列辣椒素类香草酸(高香草酰癸酰胺、高香草酰十二酰胺、高香草酰环十二酰胺、高香草酰十六酰胺、高香草酰哌啶和壬烯酰高藜芦酰胺)和树脂毒素类(微小毒素、12-脱氧佛波醇13-苯乙酸20-高香草酸酯),比较了与大鼠背根神经节膜结合的结构/活性关系以及在大鼠中的生物学反应。我们发现,所有测试的生物活性香草酸,但非活性结构类似物,都能竞争大鼠背根神经节膜中[3H]树脂毒素的结合位点,我们得出结论,[3H]树脂毒素结合试验可能为评估此类化合物提供一种有效的方法。我们还提供证据表明,[3H]树脂毒素受体可能识别插入膜中的香草酸;并且辣椒素类的表观活性可能受到平衡结合亲和力以外的因素的显著影响。

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