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新型 - 亚苄基-4-叔丁基苯甲酰肼衍生物的设计、合成、晶体结构、体外和计算机评估作为有效的脲酶抑制剂。

Design, Synthesis, Crystal Structure, In Vitro and In Silico Evaluation of New -Benzylidene-4-tert-butylbenzohydrazide Derivatives as Potent Urease Inhibitors.

机构信息

Department of Chemistry, Abdul Wali Khan University, Mardan 23200, Pakistan.

Natural & Medical Sciences Research Center, University of Nizwa, Nizwa 616, Oman.

出版信息

Molecules. 2022 Oct 14;27(20):6906. doi: 10.3390/molecules27206906.

Abstract

Hydrazides play a vital role in making biologically active compounds in various fields of chemistry. These determine antioxidant, antidepressant, antimalarial, anti-inflammatory, antiglycating, and antimicrobial activity. In the present study, twenty-three new benzylidene-4-(tert-butyl)benzohydrazide derivatives (-) were synthesized by the condensation of aromatic aldehydes and commercially available 4-(tert-butyl)benzoic acid. All the target compounds were successfully synthesized from good to excellent yield; all synthesized derivatives were characterized via spectroscopic techniques such as HREI-MS and H-NMR. Synthesized compounds were evaluated for in vitro urease inhibition. All synthesized derivatives demonstrated good inhibitory activities in the range of IC = 13.33 ± 0.58-251.74 ± 6.82 µM as compared with standard thiourea having IC = 21.14 ± 0.425 µM. Two compounds, and , were found to be more active than standard. SAR revealed that electron donating groups in phenyl ring have more influence on enzyme inhibition. However, to gain insight into the participation of different substituents in synthesized derivatives on the binding interactions with urease enzyme, in silico (computer simulation) molecular modeling analysis was carried out.

摘要

酰腙在化学的各个领域中合成具有生物活性的化合物方面起着至关重要的作用。这些化合物决定了抗氧化、抗抑郁、抗疟、抗炎、抗糖化和抗菌活性。在本研究中,通过芳香醛和市售的 4-(叔丁基)苯甲酸的缩合反应合成了二十三个新的苯亚甲基-4-(叔丁基)苯甲酰腙衍生物(-)。所有目标化合物都从良好到优异的产率成功合成;所有合成的衍生物都通过光谱技术如高分辨电子电离质谱(HREI-MS)和 H-NMR 进行了表征。合成的化合物被评估了体外脲酶抑制活性。与标准硫脲 IC = 21.14 ± 0.425 µM 相比,所有合成的衍生物均表现出良好的抑制活性,IC = 13.33 ± 0.58-251.74 ± 6.82 µM。两种化合物 和 比标准更具活性。SAR 表明,苯环上的供电子基团对酶抑制有更大的影响。然而,为了深入了解合成衍生物中不同取代基在与脲酶酶结合相互作用中的参与,进行了计算机模拟分子建模分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a3/9608490/1360282729e3/molecules-27-06906-sch001.jpg

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