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(±)-卡瓦因抑制从大鼠大脑皮层制备的突触体中藜芦碱激活的电压依赖性钠通道。

(+/-)-Kavain inhibits veratridine-activated voltage-dependent Na(+)-channels in synaptosomes prepared from rat cerebral cortex.

作者信息

Gleitz J, Beile A, Peters T

机构信息

Institute of Naturheilkunde, University Clinics Ulm, Germany.

出版信息

Neuropharmacology. 1995 Sep;34(9):1133-8. doi: 10.1016/0028-3908(95)00090-s.

Abstract

Kava pyrones are pharmacologically active compounds extracted from Piper methysticum Forst. Because kava pyrones were characterized by their anticonvulsive, analgesic and centrally muscle relaxing action, we investigated the influence of (+/-)-kavain, a synthetic kava pyrone, on veratridine-stimulated increase in intrasynaptosomal Na+ concentration ([Na+]i) of rat cerebrocortical synaptosomes. [Na+]i was measured spectrofluorometrically employing SBFI as Na+ sensitive fluorescence dye. Veratridine (5 mumol/I) enhanced basal [Na+]i 6.6-fold from 11.3 to 74.1 mmol/l Na+. Incubation of synaptosomes for 100 sec with (+/-)-kavain was sufficient to reduce dose dependently the stimulated increase of [Na+]i with an IC50 value of 86.0 mumol/l, and almost complete inhibition of Na(+)-channels was attained with 400 mumol/l) reduced veratridine-elevated [Na+]i to 30.4% and 7.9% of control whereas the centrally acting muscle relaxant mephenesin (400 mumol/l) was without any effect. Postapplication of 400 mumol/l (+/-)-kavain or 10 mumol/l TTX immediately diminished veratridine-elevated [Na+]i to nearly basal levels with a half life time of 69.7 and 41.8 sec, respectively. To study the influence of (+/-)-kavain on non stimulated synaptosomes, an increase in [Na+]i was induced by 200 mumol/l ouabain, which enhanced [Na+]i hyperbolically with an initial rate of 18.4 mmol Na+/l min. Preincubation of synaptosomes with 400 mumol/l (+/-)-kavain or 10 mumol/l TTX partly prevented Na(+)-influx for both compounds to the same extent of about 57% of control. The presented data indicate a fast and specific inhibition of voltage-dependent Na(+)-channels by (+/-)-kavain.

摘要

卡瓦吡喃酮是从卡瓦胡椒(Piper methysticum Forst.)中提取的具有药理活性的化合物。由于卡瓦吡喃酮具有抗惊厥、镇痛和中枢性肌肉松弛作用,我们研究了合成的卡瓦吡喃酮(±)-卡瓦因对藜芦碱刺激大鼠大脑皮质突触体突触小体内Na⁺浓度([Na⁺]i)升高的影响。使用SBFI作为Na⁺敏感荧光染料,通过荧光分光光度法测量[Na⁺]i。藜芦碱(5 μmol/L)使基础[Na⁺]i从11.3 mmol/L Na⁺增加到74.1 mmol/L Na⁺,增加了6.6倍。突触体与(±)-卡瓦因孵育100秒足以剂量依赖性地降低[Na⁺]i的刺激增加,IC50值为86.0 μmol/L,400 μmol/L时几乎完全抑制Na⁺通道,将藜芦碱升高的[Na⁺]i分别降低到对照的30.4%和7.9%,而中枢性肌肉松弛剂美芬新(400 μmol/L)则没有任何作用。在应用400 μmol/L(±)-卡瓦因或10 μmol/L TTX后,藜芦碱升高的[Na⁺]i立即分别在69.7秒和41.8秒的半衰期内降至接近基础水平。为了研究(±)-卡瓦因对未受刺激的突触体的影响,用200 μmol/L哇巴因诱导[Na⁺]i增加,其以18.4 mmol Na⁺/L·min的初始速率呈双曲线增加[Na⁺]i。突触体与400 μmol/L(±)-卡瓦因或10 μmol/L TTX预孵育在一定程度上部分阻止了两种化合物引起的Na⁺内流,程度约为对照的57%。所呈现的数据表明(±)-卡瓦因对电压依赖性Na⁺通道有快速且特异性的抑制作用。

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