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一种源自真菌的无刺激性三萜烯基苯酚——棒丝酚,通过与香草酸受体相互作用刺激大鼠背根神经节神经元。

A non-pungent triprenyl phenol of fungal origin, scutigeral, stimulates rat dorsal root ganglion neurons via interaction at vanilloid receptors.

作者信息

Szallasi A, Bíró T, Szabó T, Modarres S, Petersen M, Klusch A, Blumberg P M, Krause J E, Sterner O

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri, USA.

出版信息

Br J Pharmacol. 1999 Mar;126(6):1351-8. doi: 10.1038/sj.bjp.0702440.

Abstract
  1. A [3H]-resiniferatoxin (RTX) binding assay utilizing rat spinal cord membranes was employed to identify novel vanilloids in a collection of natural products of fungal origin. Of the five active compounds found (scutigeral, acetyl-scutigeral, ovinal, neogrifolin, and methyl-neogrifolin), scutigeral (Ki=19 microM), isolated from the edible mushroom Albatrellus ovinus, was selected for further characterization. 2. Scutigeral induced a dose-dependent 45Ca uptake by rat dorsal root ganglion neurons with an EC50 of 1.6 microM, which was fully inhibited by the competitive vanilloid receptor antagonist capsazepine (IC50=5.2 microM). 3. [3H]-RTX binding isotherms were shifted by scutigeral (10-80 microM) in a competitive manner. The Schild plot of the data had a slope of 0.8 and gave an apparent Kd estimate for scutigeral of 32 microM. 4. Although in the above assays scutigeral mimicked capsaicin, it was not pungent on the human tongue up to a dose of 100 nmol per tongue, nor did it provoke protective wiping movements in the rat (up to 100 microM) upon intraocular instillation. 5. In accord with being non-pungent, scutigeral (5 microM) did not elicit a measurable inward current in isolated rat dorsal root ganglion neurons under voltage-clamp conditions. It did, however, reduce the proportion of neurons (from 61 to 15%) that responded to a subsequent capsaicin (1 microM) challenge. In these neurons, scutigeral both delayed (from 27 to 72 s) and diminished (from 5.0 to 1.9 nA) the maximal current evoked by capsaicin. 6. In conclusion, scutigeral and its congeners form a new chemical class of vanilloids, the triprenyl phenols. Scutigeral promises to be a novel chemical lead for the development of orally active, non-pungent vanilloids.
摘要
  1. 利用大鼠脊髓膜进行的[3H]-树脂毒素(RTX)结合试验,用于在一系列真菌来源的天然产物中鉴定新型香草酸类化合物。在所发现的5种活性化合物(黄皮侧耳素、乙酰黄皮侧耳素、卵菌素、新格利福林和甲基新格利福林)中,从可食用蘑菇黄白牛肝菌中分离得到的黄皮侧耳素(Ki = 19微摩尔)被选作进一步表征。2. 黄皮侧耳素可诱导大鼠背根神经节神经元呈剂量依赖性地摄取45Ca,其半数有效浓度(EC50)为1.6微摩尔,竞争性香草酸类受体拮抗剂辣椒素(IC50 = 5.2微摩尔)可完全抑制该作用。3. [3H]-RTX结合等温线被黄皮侧耳素(10 - 80微摩尔)以竞争性方式移动。数据的Schild图斜率为0.8,黄皮侧耳素的表观解离常数(Kd)估计值为32微摩尔。4. 尽管在上述试验中黄皮侧耳素模拟了辣椒素,但在每舌剂量达100纳摩尔时,它在人舌上并无辛辣感,且在大鼠眼内滴注时(剂量达100微摩尔)也不会引发保护性擦拭动作。5. 与无辛辣感一致,在电压钳条件下,5微摩尔的黄皮侧耳素在分离的大鼠背根神经节神经元中未引发可测量的内向电流。然而,它确实降低了对随后辣椒素(1微摩尔)刺激有反应的神经元比例(从61%降至15%)。在这些神经元中,黄皮侧耳素既延迟了(从27秒至72秒)又减少了(从5.0纳安至1.9纳安)辣椒素诱发的最大电流。6. 总之,黄皮侧耳素及其同系物构成了一类新的香草酸类化合物,即三萜烯基酚类。黄皮侧耳素有望成为开发口服活性、无辛辣感香草酸类化合物的新型化学先导物。

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