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探索 3-羟基黄酮类化合物作为蘑菇酪氨酸酶抑制剂:合成、X 射线晶体学、抗菌、荧光行为、构效关系和分子模拟研究。

Exploring 3-hydroxyflavone scaffolds as mushroom tyrosinase inhibitors: synthesis, X-ray crystallography, antimicrobial, fluorescence behaviour, structure-activity relationship and molecular modelling studies.

机构信息

Department of Chemistry, University of Gujrat, Gujrat, Pakistan.

Department of Chemistry, Govt. College Women University, Sialkot, Pakistan.

出版信息

J Biomol Struct Dyn. 2021 Nov;39(18):7107-7122. doi: 10.1080/07391102.2020.1805364. Epub 2020 Aug 17.

Abstract

To explore new scaffolds as tyrosinase enzyme inhibitors remain an interesting goal in the drug discovery and development. In due course and our approach to synthesize bioactive compounds, a series of varyingly substituted 3-hydroxyflavone derivatives () were synthesized in one-pot reaction and screened for against mushroom tyrosinase enzyme. The structures of newly synthesized compounds were unambiguously corroborated by usual spectroscopic techniques (FTIR, UV-Vis, H-, C-NMR) and mass spectrometry (EI-MS). The structure of compound was also characterized by X-ray diffraction analysis. Furthermore, the synthesized compounds () were evaluated for their antimicrobial potential. Biological studies exhibit pretty good activity against most of the bacterial-fungal strains and their activity is comparable to those of commercially available antibiotics Cefixime and Clotrimazole. Amongst the series, the compounds and exhibited excellent inhibitory activity against tyrosinase, even better than standard compound. Remarkably, the compound (IC = 0.280 ± 0.010 μg/ml) was found almost sixfold and derivative (IC = 0.230 ± 0.020 μg/ml) about sevenfold more active as compared to standard Kojic acid (IC =1.79 ± 0.6 μg/ml). Moreover, these synthetic compounds () displayed good to moderate activities against tested bacterial and fungal strains. Their emission behavior was also investigated in order to know their potential as fluorescent probes. The molecular modelling simulations were also performed to explore their binding interactions with active sites of the tyrosinase enzyme. Limited structure-activity relationship was established to design and develop new tyrosinase inhibitors by employing 2-arylchromone as a structural core in the future. Communicated by Ramaswamy H. Sarma.

摘要

探索新型酪氨酸酶抑制剂仍然是药物发现和开发的一个有趣目标。在适当的时候,我们采用合成生物活性化合物的方法,一锅法合成了一系列不同取代的 3-羟基黄酮衍生物(),并对其进行了蘑菇酪氨酸酶抑制活性筛选。新合成化合物的结构通过常规光谱技术(FTIR、UV-Vis、H-、C-NMR)和质谱(EI-MS)得到了明确的证实。化合物的结构还通过 X 射线衍射分析进行了表征。此外,还评估了合成化合物的抗菌潜力。生物研究表明,它们对大多数细菌-真菌菌株具有很好的活性,其活性与市售抗生素头孢克肟和克霉唑相当。在该系列中,化合物和表现出对酪氨酸酶的优异抑制活性,甚至优于标准化合物。值得注意的是,与标准化合物相比,化合物(IC = 0.280 ± 0.010 μg/ml)的抑制活性高约 6 倍,衍生物(IC = 0.230 ± 0.020 μg/ml)的抑制活性高约 7 倍。此外,这些合成化合物()对测试的细菌和真菌菌株表现出良好到中等的活性。还研究了它们的发射行为,以了解它们作为荧光探针的潜力。还进行了分子建模模拟,以探索它们与酪氨酸酶酶活性位点的结合相互作用。建立了有限的构效关系,以在未来采用 2-芳基色酮作为结构核心来设计和开发新型酪氨酸酶抑制剂。由 Ramaswamy H. Sarma 通讯。

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