Gleitz J, Beile A, Peters T
Institute of Naturheilkunde, University Clinics Ulm, Germany.
Neuropharmacology. 1995 Sep;34(9):1133-8. doi: 10.1016/0028-3908(95)00090-s.
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.
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。