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选择性单胺氧化酶抑制剂。3. 与4-氨基苯乙胺相关的环状化合物。某些5-(2-氨基乙基)-2,3-二氢吲哚的制备及其对神经元的选择性作用。

Selective monoamine oxidase inhibitors. 3. Cyclic compounds related to 4-aminophenethylamine. Preparation and neuron-selective action of some 5-(2-aminoethyl)-2,3-dihydroindoles.

作者信息

Florvall L, Kumar Y, Ask A L, Fagervall I, Rényi L, Ross S B

出版信息

J Med Chem. 1986 Aug;29(8):1406-12. doi: 10.1021/jm00158a015.

Abstract

Nine 5-(2-aminoethyl)-2,3-dihydroindole derivatives were synthesized and tested as monoamine oxidase (MAO) inhibitors in vitro and in vivo. All compounds were found to be selective MAO-A inhibitors in vitro, the most active ones, 5-[1-(2-aminopropyl)]-2,3-dihydro-4-methylindole acetate (3), 5-[1-(2-aminopropyl)]-4-chloro-2,3-dihydroindole acetate (5), 5-[1-(2-aminopropyl)]-2,3-dihydro-1-ethyl-4-methylindole tartrate (6), 5-[1-(2-aminopropyl)]-2,3-dihydro-1-ethyl-6-methylindole tartrate (7), and 5-[1-(2-aminobutyl)]-4-chloro-2,3-dihydroindole acetate (9) being equipotent with amiflamine, (S)-(+)-4-(dimethylamino)-2, alpha-dimethylphenethylamine. Some of the compounds, 3, 6, 5-[1-(2-aminopropyl)]-2,3-dihydroindole acetate (1), and 5-[1-(2-amino-2-methylpropyl)]-2,3-dihydroindole acetate (8), were found to be very potent inhibitors of MAO in serotonergic and/or noradrenergic nerve terminals in the rat brain in vivo, inhibiting MAO within these neurons at doses 1/10 of those required to inhibit MAO in other neurons or cells. Compound 1 was also a potent and selective inhibitor of MAO within dopaminergic nerve terminals in vivo. This neuron selectivity is due to the uptake of these compounds by the neuronal uptake mechanisms.

摘要

合成了9种5-(2-氨乙基)-2,3-二氢吲哚衍生物,并在体外和体内作为单胺氧化酶(MAO)抑制剂进行了测试。发现所有化合物在体外均为选择性MAO-A抑制剂,其中活性最高的5-[1-(2-氨丙基)]-2,3-二氢-4-甲基吲哚乙酸酯(3)、5-[1-(2-氨丙基)]-4-氯-2,3-二氢吲哚乙酸酯(5)、5-[1-(2-氨丙基)]-2,3-二氢-1-乙基-4-甲基吲哚酒石酸盐(6)、5-[1-(2-氨丙基)]-2,3-二氢-1-乙基-6-甲基吲哚酒石酸盐(7)和5-[1-(2-氨丁基)]-4-氯-2,3-二氢吲哚乙酸酯(9)与阿米氟胺,(S)-(+)-4-(二甲氨基)-2,α-二甲基苯乙胺等效。其中一些化合物,3、6、5-[1-(2-氨丙基)]-2,3-二氢吲哚乙酸酯(1)和5-[1-(2-氨基-2-甲基丙基)]-2,3-二氢吲哚乙酸酯(8),发现在体内对大鼠脑中5-羟色胺能和/或去甲肾上腺素能神经末梢的MAO有很强的抑制作用,在这些神经元中抑制MAO的剂量是抑制其他神经元或细胞中MAO所需剂量的1/10。化合物1在体内也是多巴胺能神经末梢内MAO的有效和选择性抑制剂。这种神经元选择性是由于这些化合物通过神经元摄取机制被摄取。

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