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酰腙作为异烟肼衍生物具有多靶点特性,可用于治疗老年痴呆症:自由基清除、髓过氧化物酶/乙酰胆碱酯酶抑制和生物金属螯合。

Acylhydrazones as isoniazid derivatives with multi-target profiles for the treatment of Alzheimer's disease: Radical scavenging, myeloperoxidase/acetylcholinesterase inhibition and biometal chelation.

机构信息

Universidade Federal do Rio de Janeiro, Campus Macaé Professor Aloísio Teixeira, Avenida Aluizio da Silva Gomes, 50, CEP 27930-560, Granja dos Cavaleiros, Macaé, RJ, Brazil.

Universidade Federal do Rio de Janeiro, Cidade Universitária, Avenida Horácio Macedo, 2030, CEP 21941-598, Rio de Janeiro - RJ, Brazil.

出版信息

Bioorg Med Chem. 2020 May 15;28(10):115470. doi: 10.1016/j.bmc.2020.115470. Epub 2020 Mar 31.

Abstract

Acylhydrazones 1a-o, derived from isoniazid, were synthesized and evaluated for Myeloperoxidase (MPO) and Acetylcholinesterase (AChE) inhibition, as well as their antioxidant and metal chelating activities, with the purpose of investigating potential multi-target profiles for the treatment of Alzheimer's disease. Synthesized compounds were tested using the 2,2-diphenyl-2-picrylhydrazyl (DPPH) method and 1i, 1j and 1 m showed radical scavenging ability. Compounds 1b, 1 h, 1i, 1 m and 1o inhibited MPO activity (10 μM) at 96.1 ± 5.5%, 90 ± 2.1%, 100.3 ± 1.7%, 80.1 ± 9.4% and 82.2 ± 10.6%, respectively, and only compound 1 m was able to inhibit 54.2 ± 1.7% of AChE activity (100 μM). Docking studies of the most potent compound 1 m were carried out, and the computational results provided the theoretical basis of enzyme inhibition. Furthermore, compound 1 m was able to form complexes with Fe and Zn ions in a 2:1 ligand:metal ratio according to the Job Plot method.

摘要

酰腙类化合物 1a-o 是由异烟肼衍生而来,它们被合成并评估了对髓过氧化物酶 (MPO) 和乙酰胆碱酯酶 (AChE) 的抑制作用,以及抗氧化和金属螯合活性,目的是研究治疗阿尔茨海默病的潜在多靶点谱。使用 2,2-二苯基-2-苦基肼基 (DPPH) 法测试了合成的化合物,化合物 1i、1j 和 1m 表现出自由基清除能力。化合物 1b、1h、1i、1m 和 1o 对 MPO 活性(10μM)的抑制率分别为 96.1±5.5%、90±2.1%、100.3±1.7%、80.1±9.4%和 82.2±10.6%,而只有化合物 1m 能够抑制 AChE 活性(100μM)的 54.2±1.7%。对最有效的化合物 1m 进行了对接研究,计算结果为酶抑制提供了理论依据。此外,根据 Job 图法,化合物 1m 能够以 2:1 的配体:金属比例与 Fe 和 Zn 离子形成配合物。

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