首页> 外文期刊>Journal of Molecular Structure >Hemi-synthesis, in-vitro and in-silico bioactivities of new chiral-Schiff bases and benzodiazepine derivatives from Ammodaucus leucotrichus(S)-perillaldehyde
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Hemi-synthesis, in-vitro and in-silico bioactivities of new chiral-Schiff bases and benzodiazepine derivatives from Ammodaucus leucotrichus(S)-perillaldehyde

机译:来自Ammodaucus Leucotrichus(S)-甲醛的新手性 - 席克基碱和苯二氮卓衍生物的半合成,体外和硅藻土衍生物

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摘要

A new series of benzodiazepines and chiral Schiff bases have been prepared by an in situ condensation of (S)-(-)-perillaldehyde, occurring naturally in the essential oil of Ammodaucus leucotrichus subsp. Leucotrichus, with various amines, hydrazines, and oxalyl dihydrazide. Pure enantiomeric compounds TK16 have been obtained in moderate to good yields, after spontaneous precipitation in ethanol. The structures have been identified by one-and two-dimensional NMR experiments, FTIR, and single-crystal X-ray. To confirm the formation of unique Schiff base enantiomers and diastereomeric mixtures of benzodiazepines, chiral HPLC was used. All the new derivatives were screened for their antioxidant and antibacterial activities. The antioxidant activity has been evaluated using the DPPH-scavenging activity method, in which the benzodiazepines show an excellent activity compared to gallic acid. The antimicrobial studies revealed the highest inhibition of the chloro-benzodiazepine derivative against MSSA, MRSA, and M. luteus with MIC values between 0.125-0.25mg/mL when compared with metronidazole used as reference. Molecular docking performed on the penicillin-binding protein (PBP2a) from methicillin-resistant S. aureus MRSA has demonstrated sensitivity towards the novel Schiff Bases.
机译:通过(S)-(-)-紫苏醛的原位缩合反应,制备了一系列新的苯二氮卓类化合物和手性席夫碱类化合物。紫苏醛天然存在于白线梭梭亚种的精油中。含各种胺、肼和草酰二酰肼的银杆菌。纯对映体化合物TK16在乙醇中自发沉淀后以中等至良好的产率获得。通过一维和二维NMR实验、FTIR和单晶X射线对其结构进行了鉴定。为了确认苯二氮卓类化合物独特的希夫碱对映体和非对映体混合物的形成,使用了手性HPLC。对所有新的衍生物进行了抗氧化和抗菌活性筛选。采用DPPH清除活性法对其抗氧化活性进行了评估,与没食子酸相比,苯二氮卓类化合物表现出优异的活性。抗菌研究显示,与用作参考的甲硝唑相比,氯代苯二氮卓衍生物对MSSA、MRSA和黄体支原体的MIC值在0.125-0.25mg/mL之间具有最高的抑制作用。对来自耐甲氧西林金黄色葡萄球菌MRSA的青霉素结合蛋白(PBP2a)进行的分子对接已证明对新的希夫碱敏感。

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