Chalcones bearing nitrogen-containing heterocyclics as multi-targeted inhibitors: Design, synthesis, biological evaluation and molecular docking studies

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Yusuf Sıcak, Hüseyin Kekeçmuhammed, Ayşegül Karaküçük-İyidoğan, Tuğba Taşkın-Tok, Emine Elçin Oruç-Emre, Mehmet Öztürk
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引用次数: 2

Abstract

In this work, a series of chalcones (1a–d, 2a–d, 3a–d, 4a–d, and 5a–d) were designed and synthesized by Claisen–Schmidt condensation. Also, their chemical structures were elucidated using UV–Vis, FT IR, 1H NMR, 13C NMR, MS spectral data, and elemental analyses. Subsequently, the anticholinesterase, tyrosinase, urease inhibitory activities and antioxidant activities of all chalcones were evaluated. The inhibitory potential of all chalcones in terms of IC50 value was observed to range from 7.18 ± 0.43 to 29.62 ± 0.30 μM against BChE by comparing with Galantamine (IC50 46.06 ± 0.10 μM) as a reference drug. Also, compounds 2c, 3c, 4c, 4b, and 4d exhibited high anticholinesterase activity against both AChE and BChE enzymes. The tyrosinase inhibitory activity results revealed that three compounds (IC50 1.75 ± 0.83 μM for 2b, IC50 2.24 ± 0.11 μM for 3b, and IC50 1.90 ± 0.64 μM for 4b) displayed good inhibitory activity against tyrosinase compared with kojic acid (IC50 0.64 ± 0.12 μM). In addition, other different three chalcones (IC50 22.34 ± 0.25 μM for 2c, IC50 20.98 ± 0.08 μM for 3c, and IC50 18.26 ± 0.13 μM for 4c) showed excellent inhibitory activity against the urease by comparing with thiourea (IC50 23.08 ± 0.19 μM). Compounds 3c and 4c showed the best potency in all antioxidant activity tests. In light of these findings, the structure–activity relationship for compounds was also described. Furthermore, molecular modeling studies, including molecular docking, absorption, distribution, metabolism, excretion, and toxicity (ADMET), and pharmacophore analyses of compounds, gave important information about the interactions and drug-likeness properties. As a result, all chalcones exhibited suitable ADMET findings, predicting good oral bioavailability.

含氮杂环查尔酮多靶点抑制剂:设计、合成、生物学评价及分子对接研究
在这项工作中,通过克莱森-施密特缩合设计并合成了一系列查尔酮(1a–d、2a–d、3a–d、4a–d和5a–d)。此外,通过紫外-可见光谱、红外光谱、核磁共振氢谱、核磁共振13C谱、质谱数据和元素分析阐明了它们的化学结构。随后,对所有查尔酮的抗胆碱酯酶、酪氨酸酶、脲酶抑制活性和抗氧化活性进行了评价。观察到所有查尔酮在IC50值方面的抑制潜力在7.18的范围内 ± 0.43至29.62 ± 0.30 μM对抗BChE(IC50 46.06 ± 0.10 μM)作为参考药物。此外,化合物2c、3c、4c、4b和4d对AChE和BChE酶都表现出高的抗胆碱酯酶活性。酪氨酸酶抑制活性结果显示,三个化合物(IC50 1.75 ± 0.83 μM,适用于2b,IC50 2.24 ± 0.11 μM用于3b,IC50 1.90 ± 0.64 μM对4b)对酪氨酸酶具有良好的抑制活性(IC50 0.64 ± 0.12 μM)。此外,其他不同的三种查尔酮(IC50 22.34 ± 0.25 μM,适用于2c,IC50 20.98 ± 0.08 μM用于3c,IC50 18.26 ± 0.13 μM对4c)对脲酶的抑制作用优于硫脲(IC50 23.08) ± 0.19 μM)。化合物3c和4c在所有抗氧化活性测试中显示出最佳效力。根据这些发现,还描述了化合物的结构-活性关系。此外,分子建模研究,包括分子对接、吸收、分布、代谢、排泄和毒性(ADMET),以及化合物的药效团分析,提供了有关相互作用和药物相似性的重要信息。结果,所有查尔酮都表现出合适的ADMET结果,预测了良好的口服生物利用度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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