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槲皮素-硼杂化化合物的计算机模拟和生物活性评估,作为替代潜在抗微生物耐药性的群体感应抑制剂。

In silico and biological activity evaluation of quercetin-boron hybrid compounds, anti-quorum sensing effect as alternative potential against microbial resistance.

机构信息

Department of Chemistry, Institute of Science, Dicle University, 21280 Diyarbakir, Turkey; Department of Medical Pharmacology, Faculty of Medicine, Yozgat Bozok University, 66000 Yozgat, Turkey.

Department of Chemistry, Institute of Science, Dicle University, 21280 Diyarbakir, Turkey.

出版信息

J Trace Elem Med Biol. 2023 May;77:127139. doi: 10.1016/j.jtemb.2023.127139. Epub 2023 Feb 10.

Abstract

Boronic acid compounds and the natural flavonoid compound quercetin were handled to synthesize two novel ligands encoded as B1(2,2'-(1,4-phenylenebis (benzo [1,3,2] dioxaborole-2,5-diyl)) bis (3,5,7-trihydroxy-4H- chromen-4-one) and B2(3.3.6. 3,5,7-trihydroxy-2-(2-(6-methoxypyridin-3-yl)benzo[d][1,3,2]dioxaborol-5-yl)- 4 H-chromene-4). Antioxidant activities of ligands were investigated by DPPH, ABTS and CUPRAC methods. Cholinesterase inhibition effects of ligands were determined by acetylcholinesterase and butyrylcholinesterase enzyme inhibition methods, cytotoxic effects of ligands were applied to healthy breast and colon cancer cell lines by MTT method, and urease and tyrosinase enzyme activities were determined. Antimicrobial properties of the compounds were analyzed by detecting their anti-QS potentials on Chromobacterium violaceum biosensor strain. Both compounds were found to have significant antioxidant effects compared to controls. It was determined that the compound B1 at 1-10 µg/mL was more active than the reference compounds (α-TOC and BHT). Moreover, the enzyme activity studies on ligands demonstrated that acetylchoinesterase and butyrylcholinesterase enzyme inhibitions were higher than the reference compounds. As expected, boron derivatives exhibited respectable activity against the biofilms of Escherichia coli (E. coli) and P. aeruginosa (P. aeruginosa). These results demonstrate the potential applicability of boron derivatives in the treatment of biofilm-associated infections and provide a practical strategy for the design of new boron-based antimicrobial materials. In silico molecular docking studies were performed on ligands to identify newly synthesized compounds. The binding parameter values and binding sites of the compounds were also determined. In conclusion, our studies showed that newly synthesized hybrid compounds could be solutions for antimicrobial resistance and enzyme-related disorders.

摘要

硼酸化合物和天然类黄酮化合物槲皮素被用于合成两种新型配体,分别编码为 B1(2,2'-(1,4-亚苯基双(苯并[1,3,2]二氧杂硼烷-2,5-二基))双(3,5,7-三羟基-4H-色烯-4-酮)和 B2(3.3.6. 3,5,7-三羟基-2-(2-(6-甲氧基吡啶-3-基)苯并[d][1,3,2]二氧杂硼烷-5-基)-4H-色烯-4)。通过 DPPH、ABTS 和 CUPRAC 方法研究了配体的抗氧化活性。通过乙酰胆碱酯酶和丁酰胆碱酯酶酶抑制方法测定了配体的胆碱酯酶抑制作用,通过 MTT 法将配体应用于健康的乳腺和结肠癌细胞系,测定了脲酶和酪氨酸酶的活性。通过检测对 Chromobacterium violaceum 生物传感器菌株的抗 QS 潜力分析了化合物的抗菌特性。与对照组相比,两种化合物均表现出显著的抗氧化作用。确定化合物 B1 在 1-10μg/mL 时比参考化合物(α-TOC 和 BHT)更活跃。此外,配体的酶活性研究表明,乙酰胆碱酯酶和丁酰胆碱酯酶的抑制作用高于参考化合物。正如预期的那样,硼衍生物对大肠杆菌(E. coli)和铜绿假单胞菌(P. aeruginosa)的生物膜表现出相当的活性。这些结果表明硼衍生物在治疗生物膜相关感染方面具有潜在的应用前景,并为设计新型硼基抗菌材料提供了实用策略。对配体进行了计算机分子对接研究,以鉴定新合成的化合物。还确定了化合物的结合参数值和结合部位。总之,我们的研究表明,新合成的杂化化合物可能是解决抗菌药物耐药性和与酶相关的疾病的方法。

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