Department of Chemistry, Susquehanna University, 514 University Avenue, Selinsgrove, PA 17870, USA.
Department of Chemistry, Salve Regina University, Newport, Rhode Island 02840, USA.
Bioorg Med Chem. 2023 Jul 15;90:117369. doi: 10.1016/j.bmc.2023.117369. Epub 2023 Jun 8.
Nineteen chromene-hydrazone derivatives containing a variety of structural modifications on the hydrazone moiety were synthesized. Structure-activity correlations were investigated to determine the influence of structural variations on anti-ferroptosis, anti-quorum sensing, antibacterial, DNA cleavage and DNA binding properties. Ferroptosis inhibitory activity was determined by measuring the ability of the derivatives to reverse erastin-induced ferroptosis. Several of the derivatives were more effective than fisetin at inhibiting ferroptosis, with the thiosemicarbazone derivative being the most effective. Quorum sensing inhibition was evaluated using Vibrio harveyi, and both V. harveyi and Staphylococcus aureus were used to determine antibacterial activity. The semicarbazone and benzensulfonyl hydrazone derivatives showed moderate quorum sensing inhibition with IC values of 27 μM and 22 μM, respectively, while a few aryl hydrazone and pyridyl hydrazone derivatives showed bacterial growth inhibition, with MIC values ranging from 3.9 to 125 μM. In addition, the interaction of the hydrazone derivatives with DNA was investigated by gel electrophoresis, UV-Vis spectroscopy and molecular docking. All of the derivatives cleaved plasmid DNA and showed favorable interaction with B-DNA through minor groove binding. Overall, this work highlights a broad range of pharmacological applications for chromene-hydrazone derivatives.
合成了 19 种含有各种腙部分结构修饰的色烯腙衍生物。通过研究结构-活性关系,确定了结构变化对反铁死亡、反群体感应、抗菌、DNA 切割和 DNA 结合特性的影响。通过测量衍生物逆转依拉司亭诱导的铁死亡的能力来确定铁死亡抑制活性。一些衍生物比非瑟酮更能有效地抑制铁死亡,其中硫代半卡巴腙衍生物的效果最为显著。使用哈维弧菌评估群体感应抑制作用,并用哈维弧菌和金黄色葡萄球菌来确定抗菌活性。半卡巴腙和苯磺酰腙衍生物表现出适度的群体感应抑制,IC 值分别为 27 μM 和 22 μM,而一些芳基腙和吡啶腙衍生物表现出细菌生长抑制,MIC 值范围为 3.9 至 125 μM。此外,通过凝胶电泳、紫外-可见光谱和分子对接研究了腙衍生物与 DNA 的相互作用。所有衍生物均能切割质粒 DNA,并通过小沟结合表现出与 B-DNA 的有利相互作用。总的来说,这项工作突出了色烯腙衍生物在广泛的药理学应用方面的潜力。