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有机二硒化物的双面氧化还原特性。

Janus -faced oxidant and antioxidant profiles of organo diselenides.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Bhopal Bhauri By-pass Road, Bhopal 462066, Madhya Pradesh, India.

出版信息

Dalton Trans. 2021 Oct 26;50(41):14576-14594. doi: 10.1039/d1dt01565f.

Abstract

To date, organoseleniums are pre-eminent for peroxide decomposition and radical quenching antioxidant activities. On the contrary, here, a series of Janus-faced aminophenolic diselenides have been prepared from substituted 2-iodoaniline and selenium powder using copper-catalyzed methodology. Subsequently, condensation with substituted salicylaldehyde afforded the Schiff base, which on reduction, yielded the desired substituted aminophenolic diselenides in 72%-88% yields. The generation of reactive oxygen species (ROS) from oxygen gas by the synthesized aminophenolic diselenides was studied by analyzing the oxidation of dichlorofluorescein diacetate (DCFDA) dye and -nitro-thiophenol by fluorescence and UV-Visible spectroscopic methods. Furthermore, density functional theory calculations and crystal structure analysis revealed the role of functional amine and hydroxyl sites present in the Janus-faced organoselenium catalyst for the activation of molecular oxygen, where NH and phenolic groups bring the oxygen molecule close to the catalyst by N-H⋯O and O-H⋯O intermolecular interactions. Additionally, these functionalities stabilize the selenium-centered radical in the formed transition states. Antioxidant activities of the synthesized diselenides have been explored as the catalyst for the decomposition of hydrogen peroxide using benzenethiol sacrificial co-reductant by a well-established thiol assay. Radical quenching antioxidant activity was studied by the quenching of DPPH radicals at 516 nm by UV-Visible spectroscopy. The structure activity correlation suggests that the electron-rich phenol and electron-rich and sterically hindered selenium center enhance the oxidizing property of the aminophenolic diselenides. Janus-faced diselenides were also evaluated for their cytotoxic effect on HeLa cancer cells MTT assay, which suggests that the compounds are effective at 15-18 μM concentration against cancer cells. Moreover, the combination with therapeutic anticancer drugs Erlotinib and Doxorubicin showed promising cytotoxicity at the nanomolar concentration (8-28 nM), which is sufficient to suppress the growth of the cancer cells.

摘要

迄今为止,有机硒在过氧化物分解和自由基淬灭抗氧化活性方面表现出色。相反,在这里,我们使用铜催化方法,从取代的 2-碘苯胺和硒粉制备了一系列双面氨基苯并二硒化物。随后,与取代的水杨醛缩合得到席夫碱,还原后以 72%-88%的产率得到所需的取代氨基苯并二硒化物。通过分析二氯荧光素二乙酸酯(DCFDA)染料和-硝基-噻吩酚的氧化,研究了合成的氨基苯并二硒化物从氧气中产生活性氧物种(ROS)的情况,荧光和紫外可见光谱法。此外,密度泛函理论计算和晶体结构分析揭示了 Janus 面有机硒催化剂中存在的功能胺和羟基位点对分子氧的活化作用,其中 NH 和酚基通过 N-H⋯O 和 O-H⋯O 分子间相互作用使氧分子靠近催化剂。此外,这些官能团稳定了形成过渡态中的硒中心自由基。通过使用苯硫醇牺牲共还原剂分解过氧化氢,研究了合成二硒化物作为催化剂的抗氧化活性。通过紫外可见光谱法研究了 DPPH 自由基在 516nm 处的猝灭情况,研究了自由基猝灭抗氧化活性。结构活性相关性表明,富电子酚和富电子且空间位阻的硒中心增强了氨基苯并二硒化物的氧化性能。Janus 面二硒化物还通过 MTT 测定法对 HeLa 癌细胞的细胞毒性进行了评估,结果表明,在 15-18μM 浓度下,这些化合物对癌细胞有效。此外,与治疗性抗癌药物厄洛替尼和阿霉素联合使用时,在纳摩尔浓度(8-28 nM)下表现出有希望的细胞毒性,足以抑制癌细胞的生长。

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