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首页> 外文期刊>Journal of Fluorescence >Evaluation of DNA Binding, Radicals Scavenging and Antimicrobial Studies of Newly Synthesized N-Substituted Naphthalimides: Spectroscopic and Molecular Docking Investigations
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Evaluation of DNA Binding, Radicals Scavenging and Antimicrobial Studies of Newly Synthesized N-Substituted Naphthalimides: Spectroscopic and Molecular Docking Investigations

机译:新合成的N取代萘二甲酰亚胺的DNA结合,自由基清除和抗菌研究的评估:光谱和分子对接研究

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摘要

In this study, we investigated a new series of naphthalimide based Schiff base compounds as potential DNA binding, antioxidant and antimicrobial agents. The structural characterization of synthesized compounds was carried out with the aid of elemental analysis and spectroscopic techniques (UV-vis., IR, H-1 and C-13 NMR). The DNA binding properties of target compounds against Ct-DNA (calf thymus) have been investigated in detail by numerous biophysical techniques (UV-vis, fluorescence, ethidium bromide displacement assay, Time resolved fluorescence, viscosity, cyclic voltammetry and circular dichorism) and the evidences have suggested that the test compounds could interact with DNA via intercalative binding. The extent of DNA binding (K-b) of these compounds follow the order of 3b (3.33 x 10(4) M-1) > 3a (2.25 x 10(4) M-1) > 3c (2 x 10(4) M-1), suggesting that compound 3b binds more strongly to Ct- DNA than the compounds 3a and 3c. Molecular docking results further support intercalative binding of test compounds with DNA. The binding energies of docked compounds (3a-3c) were found to be -8.20 to -8.69 kcal/ mol, suggesting greater binding affinity to Ct-DNA. The synthesized compounds displayed potential antimicrobial activities against Escherichia coli, Staphylococcus aureus, Klebsiella pneumoniae and Salmonella typhimurium. Compound 3c has emerged as most active against all the four tested bacterial strains with MIC value in the range of 0.031-0.062 mg/mL. In the mutagenicity studies, all the test compounds were found to be non-mutagenic both in the presence and absence of metabolic activation. Furthermore, the antioxidant activity experiments show that these compounds exhibited potential scavenging activities against DPPH and H2O2 radicals.
机译:在这项研究中,我们研究了一系列基于萘二甲酰亚胺的席夫碱化合物作为潜在的DNA结合剂,抗氧化剂和抗菌剂。借助元素分析和光谱技术(UV-vis。,IR,H-1和C-13 NMR)对合成化合物进行结构表征。通过多种生物物理技术(紫外可见,荧光,溴化乙锭置换试验,时间分辨荧光,粘度,循环伏安法和圆二色谱法)已详细研究了目标化合物对Ct-DNA(小牛胸腺)的DNA结合特性。证据表明受试化合物可以通过插入结合与DNA相互作用。这些化合物的DNA结合程度(Kb)依次为3b(3.33 x 10(4)M-1)> 3a(2.25 x 10(4)M-1)> 3c(2 x 10(4)M -1),表明化合物3b与Ct-DNA的结合比化合物3a和3c更牢固。分子对接的结果进一步支持了测试化合物与DNA的插入结合。发现对接化合物(3a-3c)的结合能为-8.20至-8.69 kcal / mol,表明对Ct-DNA的结合亲和力更大。合成的化合物对大肠杆菌,金黄色葡萄球菌,肺炎克雷伯菌和鼠伤寒沙门氏菌具有潜在的抗菌活性。化合物3c以MIC值在0.031-0.062 mg / mL的范围内对所有四种受试细菌菌株最具活性。在致突变性研究中,发现所有测试化合物在存在和不存在代谢激活的情况下均为非致突变性的。此外,抗氧化剂活性实验表明,这些化合物对DPPH和H2O2自由基具有潜在的清除活性。

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