首页> 外文期刊>Biochemical Pharmacology >Different effects on (3H)noradrenaline uptake of the Aconitum alkaloids aconitine, 3-acetylaconitine, lappaconitine, and N-desacetyllappaconitine in rat hippocampus.
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Different effects on (3H)noradrenaline uptake of the Aconitum alkaloids aconitine, 3-acetylaconitine, lappaconitine, and N-desacetyllappaconitine in rat hippocampus.

机译:对大鼠海马中乌头碱生物碱乌头碱,3-乙酰aco碱,拉帕尼汀和N-去乙酰基拉帕尼汀对(3H)去甲肾上腺素摄取的不同影响。

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The effect of the Aconitum alkaloids aconitine, 3-acetylaconitine, lappaconitine, and N-desacetyllappaconitine to inhibit [3H]noradrenaline uptake was investigated in rat hippocampal synaptosomes. Aconitine and 3-acetylaconitine, which are known to activate sodium channels, had comparable inhibitory potencies and yielded Ki (inhibitor constant) values of 230 +/- 66 nM and 316 +/- 96 nM, respectively. In contrast, lappaconitine and N-desacetyllappaconitine failed to inhibit [3H]noradrenaline uptake. When either lappaconitine or N-desacetyllappaconitine was applied in combination with aconitine, [3H]noradrenaline uptake was not affected. The sodium channel blocker tetrodotoxin enhanced [3H]noradrenaline uptake, whereas uptake was completely blocked in sodium-free incubation medium. The inhibitory action of aconitine and 3-acetylaconitine on [3H]noradrenaline uptake was blocked by addition of tetrodotoxin. Patch clamp studies performed on cultured rat hippocampal neurons revealed an inhibitory action of lappaconitine and N-desacetyllappaconitine on whole cell sodium currents. It is concluded that the blockade of [3H]noradrenaline uptake evoked by aconitine and 3-acetylaconitine is mediated indirectly by an increased sodium concentration in the synaptosomes.
机译:在大鼠海马突触体中研究了乌头碱生物碱乌头碱,3-乙酰基肉碱,拉帕尼汀和N-去乙酰基拉帕尼汀抑制[3H]去甲肾上腺素的摄取。已知可以激活钠通道的乌头碱和3-乙酰基nit碱具有相当的抑制力,Ki(抑制剂常数)值分别为230 +/- 66 nM和316 +/- 96 nM。相反,拉帕尼汀和N-去乙酰基拉帕尼汀未能抑制[3H]去甲肾上腺素的摄取。当拉帕尼汀或N-去乙酰基拉帕尼汀与乌头碱联合应用时,[3H]去甲肾上腺素的摄取不受影响。钠通道阻滞剂河豚毒素可提高[3H]去甲肾上腺素的摄取,而在无钠培养液中完全阻断了摄取。通过添加河豚毒素可阻断乌头碱和3-乙酰aco碱对[3H]去甲肾上腺素摄取的抑制作用。对培养的大鼠海马神经元进行的膜片钳研究表明,拉帕尼汀和N-去乙酰基拉帕尼汀对全细胞钠电流具有抑制作用。结论是,乌头碱和3-乙酰aco碱引起的[3H]去甲肾上腺素摄取的阻断是通过突触体中钠浓度的增加间接地介导的。

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