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合成 N-取代吲哚衍生物作为潜在的抗菌和抗利什曼原虫药物。

Synthesis of N-substituted indole derivatives as potential antimicrobial and antileishmanial agents.

机构信息

Department of Natural Products, National Institute of Pharmaceutical Education and Research (NIPER), Sector-67, S.A.S. Nagar, Punjab 160062, India.

Department of Pharmaceutical Technology Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Sector-67, S.A.S. Nagar, Punjab 160062, India.

出版信息

Bioorg Chem. 2020 Jun;99:103787. doi: 10.1016/j.bioorg.2020.103787. Epub 2020 Mar 30.

Abstract

Leishmaniasis and microbial infections are two of the major contributors to global mortality and morbidity rates. Hence, development of novel, effective and safer antileishmanial and antimicrobial agents having reduced side effects are major priority for researchers. Two series of N-substituted indole derivatives i.e. N-substituted indole based chalcones (12a-g) and N-substituted indole based hydrazide-hydrazones (18a-g, 19a-f, 21 a-g) were synthesized. The synthesized compounds were characterized by H NMR, C NMR, Mass and FT-IR spectral data. Further these derivatives were evaluated for their antimicrobial potential against Escherichia coli, Bacillus subtilis, Pseudomonas putida and Candida viswanathii, and antileishmanial potential against promastigotes of Leishmania donovani. Compounds 18b, 18d and 19d exhibited significant activity with an IC of 0.19 ± 0.03 µM, 0.14 ± 0.02 µM and 0.16 ± 0.06 µM against B. subtilis which was comparable to chloramphenicol (IC of 0.25 ± 0.03 µM). Compounds 12b and 12c exhibited an IC of 24.2 ± 3.5 µM and 21.5 ± 2.1 µM in the antileishmanial assay. Binding interactions of indole based hydrazide-hydrazones were studied with nitric oxide synthase in silico in order to understand the structural features responsible for activity.

摘要

利什曼病和微生物感染是导致全球死亡率和发病率的两个主要因素。因此,开发新型、有效和更安全的抗利什曼病和抗菌药物,减少副作用,是研究人员的主要重点。合成了两个系列的 N-取代吲哚衍生物,即 N-取代吲哚基查耳酮(12a-g)和 N-取代吲哚基酰肼-腙(18a-g、19a-f、21a-g)。合成的化合物通过 H NMR、C NMR、质谱和 FT-IR 光谱数据进行了表征。进一步评估了这些衍生物的抗菌潜力,对抗大肠杆菌、枯草芽孢杆菌、铜绿假单胞菌和念珠菌 viswanathii,以及抗利什曼原虫的潜在作用,对抗利什曼原虫的前鞭毛体。化合物 18b、18d 和 19d 表现出显著的活性,其 IC 分别为 0.19±0.03μM、0.14±0.02μM 和 0.16±0.06μM,对枯草芽孢杆菌的活性与氯霉素(IC 为 0.25±0.03μM)相当。化合物 12b 和 12c 在抗利什曼原虫试验中表现出 24.2±3.5μM 和 21.5±2.1μM 的 IC。在计算机模拟中研究了吲哚基酰肼-腙与一氧化氮合酶的结合相互作用,以了解负责活性的结构特征。

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