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作为强效抗惊厥剂的氨基脲及其生物电子等排类似物的设计与合成:氢键的作用

Design and synthesis of semicarbazones and their bio-isosteric analogues as potent anticonvulsants: the role of hydrogen bonding.

作者信息

Pandeya Surendra, Agarwal Anil K, Singh Anita, Stables James P

机构信息

Department of Pharmaceutics, Institute of Technology, Banaras Hindu University, Varanasi--221005, India.

出版信息

Acta Pharm. 2003 Mar;53(1):15-24.

Abstract

A series of p-nitrophenyl substituted semicarbazones (4a-c) and phenoxy/p-bromophenoxy acetyl hydrazones (8a-q) were synthesized and their anticonvulsant activity was screened against maximal electroshock seizure (MES), subcutaneous metrazole (ScMet) and subcutaneous strychnine (ScSty) tests. Compounds 4a-c with -NHCO- were found to be the most active in all these tests. These compounds were also active in the MES test after oral administration in rats. On the other hand, compounds 8a-q with -OCH2- were devoid of anticonvulsant activity. The studies revealed that the hydrogen bonding domain in semicarbazones, adjacent to the lipophilic aryl ring, is essential for the anticonvulsant activity.

摘要

合成了一系列对硝基苯基取代的氨基脲(4a - c)和苯氧基/对溴苯氧基乙酰腙(8a - q),并通过最大电休克惊厥(MES)、皮下注射戊四氮(ScMet)和皮下注射士的宁(ScSty)试验对它们的抗惊厥活性进行了筛选。发现具有 -NHCO- 的化合物4a - c在所有这些试验中活性最高。这些化合物经大鼠口服给药后在MES试验中也具有活性。另一方面,具有 -OCH2- 的化合物8a - q没有抗惊厥活性。研究表明,氨基脲中与亲脂性芳环相邻的氢键区域对于抗惊厥活性至关重要。

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