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Synthesis crystal structures Hirshfeld surface analysis and spectroscopic studies of two Schiff bases of anisaldehyde and their urease and acetylcholinesterase inhibitory and antioxidant properties

机译:两种茴香醛的席夫碱的合成晶体结构Hirshfeld表面分析和光谱研究及其脲酶和乙酰胆碱酯酶的抑制和抗氧化性能

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摘要

The growing demand of pharmaceutical industry for more effective drugs requires new molecules with promising medicinal activities. In the present work, a natural product anisaldehyde was treated with hydrazine and 3,5-dichloroaniline to synthesize their Schiff bases, ASB1 and ASB2, which were assessed for various bioactivities. ASB1 was synthesized by conventional reflux method while ASB2 was synthesized by reflux as well as by mechanochemical grinding method which gave higher yield. The bases were recrystalised, and their structures were elucidated based on XRD and spectroscopic studies. Hirshfeld surface analysis was also carried out. They showed considerable urease inhibitory activity, almost comparable with the standard thiourea. The activity of ASB1 was much higher than ASB2. Acetylcholinesterase inhibitory activity of ASB1 was also higher than that of ASB2. The antioxidant activities were determined using DPPH, ABTS radical scavenging and total antioxidant capacity (TAC) assays. The bases were very poor scavengers of DPPH radical. However, they showed considerable anti-radical activity against ABTS radical, ASB2 being more active than ASB1, while ASB1 showed higher TAC than ASB2. In conclusion, the bases appeared to have good drugability as inhibitors of urease and acetylcholinesterase enzymes. They can be easily synthesized for possible large-scale applications. The grinding method proved to be more efficient than the reflux method.
机译:制药行业对更有效的药物的需求不断增长,需要具有良好医学活性的新分子。在本工作中,天然产物茴香醛用肼和3,5-二氯苯胺处理以合成其Schiff碱ASB1和ASB2,并对其各种生物活性进行了评估。通过常规回流法合成ASB1,通过回流以及机械化学研磨法合成ASB2,产率更高。根据XRD和光谱研究,重结晶了碱基,并阐明了其结构。还进行了赫希菲尔德表面分析。他们显示出相当大的脲酶抑制活性,几乎与标准硫脲相当。 ASB1的活性远高于ASB2。 ASB1的乙酰胆碱酯酶抑制活性也高于ASB2。使用DPPH,ABTS自由基清除和总抗氧化剂容量(TAC)分析测定抗氧化剂活性。该碱是非常差的DPPH自由基清除剂。然而,它们显示出对ABTS自由基的显着抗自由基活性,ASB2的活性高于ASB1,而ASB1的TAC则高于ASB2。总之,这些碱作为脲酶和乙酰胆碱酯酶的抑制剂似乎具有良好的可药用性。可以轻松地将它们合成以用于可能的大规模应用。事实证明,研磨方法比回流方法更有效。

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