设计,in silico研究和高效合成N-acylhydrazones在深深的浸泡溶剂:潜在的抗药剂
Rosa Maria B Alves1, Emelly Suelen F R Santos1, Mayara Vitória S Silva1
1Laboratory of Medicinal Organic Synthesis of Paraíba, Department of Chemistry, Federal University of Paraíba (UFPB), João Pessoa, PB, 58.051-900, Brazil.
研究人员使用可持续的深度欧性溶剂 (DES) 方法从异中合成了新型N-酸. 计算分析揭示了与GABA (A) 受体的有希望的相互作用,确定了潜在的新抗药候选药物.
科学领域:
- 药用化学 医学化学
- 有机合成 有机合成
- 计算化学计算化学
背景情况:
- 治疗面临着挑战,因为当前药物的疗效和副作用有限.
- 对于具有改进的特征的新型抗药物候选药物有着至关重要的需求.
研究的目的:
- 通过可持续的方法合成来自伊沙的N-酸.
- 探索用于识别新型抗药物候选者的计算方法.
- 为了评估合成的化合物与GABA (A) 受体的相互作用.
主要方法:
- 使用胆化物和p-toluenesulfonic acid (p-TSA) 的深度环氧溶剂 (DES) 合成18种异酸衍生物.
- 在分析中使用,以评估与GABA(A) 受体的配体受体相互作用.
- 评估了用于可持续合成的DES可回收性.
主要成果:
- 有效,选择性和环保的合成N-酸和良好的优异的产量.
- 深度环氧化溶剂 (DES) 在四个循环中表现出高的可回收性,没有活动损失.
- 化合物3d,3e和3o与关键GABA (A) 受体残留物产生了有利的相互作用,表明潜在的抗活性.
结论:
- 深溶剂 (DES) 为合成潜在的抗化合物提供了一种可持续和高效的方法.
- 在子选中有效地确定了对GABA(A) 受体具有有前途的结合特征的化合物.
- 这种综合方法加速了新型抗药物候选药物的发现.
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