Pandeya Surendra N, Rajput Neha
Department of Pharmaceutical Sciences, Saroj Institute of Technology and Management, Sultanpur Road, Lucknow 226002, India.
Int J Med Chem. 2012;2012:237965. doi: 10.1155/2012/237965. Epub 2012 Nov 28.
Benzodiazepines have a various behavioral effects in addition to their anxiolytic action. There is every reason to believe that the BZ/GABA receptor complex is involved in these effects, since GABAmimetic manipulations modify the effect of BZ in tests of convulsive activity, motor function, and appetitive behavior. 1,5-Benzodiazepines are biologically important molecules and are extensively used clinically as analgesic, hypnotic, sedative, and antidepressive agents. Hence, 1,5-Benzodiazepines were synthesized by condensation of o-phenylenediamine and ketones, for example, cyclohexanone and acetone in presence of sulfated zirconia (catalyst). Mannich bases were synthesized with acetophenone, p-nitroacetophenone, p-chloroacetophenone, and formaldehyde. Schiff bases were synthesized using Mannich base of 1,5-benzodiazepines with p-chloroaniline and p-chlorophenylsemicarbazide in the presence of glacial acetic acid. All the synthesized compounds were characterized by (1)H NMR and IR spectral analyses. All the synthesized derivatives were evaluated at the dose of 30 mg/kg b.w for anticonvulsant activity by isoniazid induced convulsion model, and the compounds NBZD-3 and NBZD-8 were found to be the most active among all compounds. Among all the synthesized derivatives, compounds NBZD-13 and NBZD-17 were found to be the most active among all compounds using thiosemicarbazide induced model. Although NBZD-8, NBZD-10, and NBZD-18 are the compounds which had shown good anticonvulsant activity and have an advantage over that, they were not sedative.
苯二氮䓬类药物除了具有抗焦虑作用外,还具有多种行为效应。完全有理由相信,BZ/GABA受体复合物参与了这些效应,因为模拟GABA的操作会改变苯二氮䓬类药物在惊厥活动、运动功能和食欲行为测试中的作用。1,5-苯二氮䓬类药物是重要的生物分子,在临床上广泛用作镇痛药、催眠药、镇静药和抗抑郁药。因此,1,5-苯二氮䓬类药物是通过邻苯二胺与酮(如环己酮和丙酮)在硫酸化氧化锆(催化剂)存在下缩合而成。用苯乙酮、对硝基苯乙酮和对氯苯乙酮与甲醛合成了曼尼希碱。在冰醋酸存在下,用1,5-苯二氮䓬类药物的曼尼希碱与对氯苯胺和对氯苯氨基脲合成了席夫碱。所有合成的化合物均通过¹H NMR和红外光谱分析进行表征。所有合成的衍生物均以30mg/kg体重的剂量通过异烟肼诱导惊厥模型评估其抗惊厥活性,发现化合物NBZD-3和NBZD-8在所有化合物中活性最高。在所有合成的衍生物中,使用氨基硫脲诱导模型时,发现化合物NBZD-13和NBZD-17在所有化合物中活性最高。尽管NBZD-8、NBZD-10和NBZD-18具有良好的抗惊厥活性且具有优势,但它们没有镇静作用。