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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis and anticonvulsant activity of enaminones. 4. Investigations on isoxazole derivatives.
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Synthesis and anticonvulsant activity of enaminones. 4. Investigations on isoxazole derivatives.

机译:烯胺酮的合成和抗惊厥活性。 4.对异恶唑衍生物的研究。

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Due to the exceptional anticonvulsant activity displayed by substituted aniline enaminones, related pyridine derivatives and phenothiazines synthesised in our laboratories, the further investigation of various aromatic heterocycles was undertaken. Condensation of cyclic 1,3-diketo esters with 3-, and 5-aminoisoxazole derivatives led to a series of potent anti-maximal electroshock (MES) analogues, three of which occurred in the 3-amino series: ethyl ester (10), orally (po) active in rats [ED(50) 68.9 mg kg(-1), TD(50)>500 mg kg(-1), protective index (PI=TD(50)/ED(50))>49.6]; methyl ester (9), ED(50) 68.9 mg kg(-1) intraperitoneally (ip) in mice, TD(50)>500 mg kg(-1), PI>7.3, and tert-butyl ester (8), ED(50) 28.1 mg kg(-1) po in rats, TD(50)>500 mg kg(-1), PI>17.8. Sodium channel binding studies, as well as evaluations against pentylenetetrazol, bicuculline, and picrotoxin on isoxazole 10 were all negative, leading to an unknown mechanism of action. X-ray diffraction patterns of a representative of the 3-amino series (isoxazoles 6-11) unequivocally display the existence of intramolecular hydrogen bonding of the nitrogen to the vinylic proton in the cyclohexene ring, providing a pseudo three ring structure which was also shown previously with the vinylic benzamides. Physicochemical-permeability across the BBB suggested an efflux mechanism for the previously synthesised aniline enaminones, but not with isoxazole 10.
机译:由于在我们的实验室中合成的取代苯胺烯胺酮,相关的吡啶衍生物和吩噻嗪具有出色的抗惊厥活性,因此对各种芳族杂环进行了进一步的研究。环状1,3-二酮酯与3-和5-氨基异恶唑衍生物的缩合导致一系列有效的最大抗电击(MES)类似物,其中三个发生在3-氨基系列中:乙酯(10),大鼠口服(po)活跃[ED(50)68.9 mg kg(-1),TD(50)> 500 mg kg(-1),保护指数(PI = TD(50)/ ED(50))> 49.6 ];甲酯(9),小鼠腹膜内(ip)的ED(50)68.9 mg kg(-1),TD(50)> 500 mg kg(-1),PI> 7.3和叔丁酯(8),大鼠体内ED(50)28.1 mg kg(-1)po,TD(50)> 500 mg kg(-1),PI> 17.8。钠通道结合研究以及对异恶唑10的戊烯四唑,双瓜氨酸和苦瓜毒素的评估均为阴性,导致未知的作用机理。 3-氨基系列(异恶唑6-11)的代表的X射线衍射图明确显示了氮与环己烯环中乙烯基质子的分子内氢键的存在,也显示出伪三环结构以前使用乙烯基苯甲酰胺。整个BBB的理化渗透性表明了先前合成的苯胺烯胺酮的外排机理,但与异恶唑10无关。

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