Department of Chemistry, Faculty of Science, University of Kragujevac, R. Domanovica 12, 34000 Kragujevac, Serbia.
Department of Theoretical Physics and Condensed Matter Physics, "VINCA" Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade, Belgrade, Serbia.
Med Chem. 2021;17(8):807-819. doi: 10.2174/1573406416666200602152643.
From the point of view of medicinal chemistry, compounds containing phenolic and pyrazolic moiety are significant since they are often constituents of bioactive compounds.
The aims of this study were to synthesize pyrazole derivatives of medically relevant phenolic acids, confirm their structure, and evaluate their antioxidative and anti-LOX activities.
Phenolic pyrazole derivatives were obtained, starting from esters of medically relevant phenolic acids. The structures of all obtained compounds were determined by NMR and IR spectroscopy, and UV-Vis spectrophotometry. In addition, the single-crystal X-ray diffraction was used. Pyrazole derivatives were tested for their in vitro antioxidative (DPPH assay), and lipoxygenase (LOX) inhibitory activities. Radical quenching mechanism was estimated using DFT and thermodynamic approach, while molecular docking was used to estimate the binding mode within the enzyme.
Pyrazole derivatives were obtained in high yields. The crystal structure of a new compound 3e was determined. Pyrazole derivative with catechol moiety 3d exhibited excellent radical scavenging activity, while compound 3b exhibited the best anti-LOX activity. Molecular docking study revealed that there is no direct interaction of any ligand with the active site of LOX-Ib, but pyrazoles 3a-e behave as inhibitors blocking the approach of linoleic acid to the active site.
In this research, protocatechuic and vanillic acid pyrazole derivatives have been obtained for the first time. In vitro antioxidative assay suggests that pyrazole derivate of protocatechuic acid is a powerful radical scavenger, while anti-LOX assay indicates a pyrazole derivative with 4-hydroxyphenyl moiety.
从药物化学的角度来看,含酚和吡唑部分的化合物是很重要的,因为它们通常是生物活性化合物的组成部分。
本研究的目的是合成与医学相关的酚酸的吡唑衍生物,确认其结构,并评价其抗氧化和抗 LOX 活性。
从与医学相关的酚酸的酯开始,获得了酚吡唑衍生物。所有获得的化合物的结构均通过 NMR 和 IR 光谱以及 UV-Vis 分光光度法确定。此外,还使用了单晶 X 射线衍射。测试了吡唑衍生物的体外抗氧化(DPPH 测定)和脂氧合酶(LOX)抑制活性。使用 DFT 和热力学方法估计了自由基猝灭机制,而分子对接用于估计在酶内的结合模式。
以高产率获得了吡唑衍生物。确定了新化合物 3e 的晶体结构。具有儿茶酚部分的吡唑衍生物 3d 表现出出色的自由基清除活性,而化合物 3b 表现出最佳的抗 LOX 活性。分子对接研究表明,没有任何配体与 LOX-Ib 的活性位点直接相互作用,但吡唑 3a-e 作为抑制剂阻止了亚麻酸接近活性位点。
在这项研究中,首次获得了原儿茶酸和香草酸的吡唑衍生物。体外抗氧化测定表明,原儿茶酸的吡唑衍生物是一种强大的自由基清除剂,而抗 LOX 测定表明具有 4-羟基苯基部分的吡唑衍生物。