首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Synthesis, in silico metabolic and toxicity prediction of some novel imidazolinones derivatives as potent anticonvulsant agents
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Synthesis, in silico metabolic and toxicity prediction of some novel imidazolinones derivatives as potent anticonvulsant agents

机译:新型咪唑啉酮类衍生物作为强效惊厥药的合成,计算机代谢和毒性预测

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A series of 1,2,4-trisubstituted 5-imidazolinone derivatives were synthesized by Erlenmeyer condensation of benzoylglycine (hippuric acid) with different aldehydes in the presence of sodium acetate and acetic anhydride. The derivatives of the compounds were prepared by condensation of some known sulpha drugs with 5-oxazolone derivatives. The anticonvulsant activity of the compounds was determined by the protection of pentylenetetrazole-induced convulsions that was ranged from 10 to 60%. The compounds with p-OCH3, p-OH and o-Cl substitutions in the phenyl ring on 4th position of the imidazolinone ring exhibited good anticonvulsant activity. In silico metabolic and toxicity studies showed that all the compounds in the series are not likely to exhibit toxicity except the compounds IIIa, IIIb, VIa and VIb, that is predicted to show 29% mutagenicity and 53% irritation in comparison to the other compounds. The predicted lethal effect and hERG toxicity of the compounds showed that IIa, IVa, Va and Vb might be toxic at higher concentrations. The results successfully establish the synthesized imidazolinone derivatives as novel compounds with anticonvulsant properties, low predicted cardiotoxicity and lethal effects thus can be promising leads for further development as novel anticonvulsants.
机译:在乙酸钠和乙酸酐的存在下,通过苯甲酰甘氨酸(马尿酸)与不同醛的艾伦缩合反应,合成了一系列1,2,4-三取代的5-咪唑啉酮衍生物。通过将某些已知的磺胺药物与5-恶唑酮衍生物缩合来制备化合物的衍生物。化合物的抗惊厥活性通过戊烯四唑诱导的惊厥的保护范围为10%至60%来确定。在咪唑啉酮环的第4位的苯环上具有p-OCH 3 ,p-OH和o-Cl取代的化合物表现出良好的抗惊厥活性。在计算机上进行的代谢和毒性研究表明,除化合物IIIa,IIIb,VIa和VIb外,该系列的所有化合物均不太可能表现出毒性,与其他化合物相比,该化合物显示出29%的致突变性和53%的刺激性。化合物的预测致死作用和hERG毒性表明,IIa,IVa,Va和Vb在较高浓度下可能具有毒性。结果成功地建立了合成的咪唑啉酮衍生物作为具有抗惊厥特性,低预测的心脏毒性和致死作用的新型化合物,因此可以作为进一步开发新型抗惊厥剂的有前途的线索。

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