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三种炔基取代的 3-亚基二氢苯并[d]异噻唑 1,1-二氧化物衍生物的抗炎样、抗氧化活性评价及分子对接。

Assessment of anti-inflammatory-like, antioxidant activities and molecular docking of three alkynyl-substituted 3-ylidene-dihydrobenzo[d]isothiazole 1,1-dioxide derivatives.

机构信息

Laboratory of Medicinal Chemistry, Center for Interdisciplinary Research on Medicines (CIRM), University of Liège, Quartier Ho^pital B36 Av. Hippocrate 15 B-4000 Liège, Belgium.

Laboratoire de Physiologie et Biotechnologie Végétales (LPBV), Faculté des Sciences (FDS), Université de Lomé (UL), Lomé, Togo.

出版信息

Chem Biol Interact. 2021 Aug 1;344:109513. doi: 10.1016/j.cbi.2021.109513. Epub 2021 May 8.

Abstract

The presence of enyne and benzoisothiazole functions in the molecular architecture of compounds 1, 2 and 3 were expected to provide biochemical activities. In the present work, we first examined the molecular surface contact of three alkynyl-substituted 3-ylidenedihydrobenzo[d] isothiazole 1,1-dioxides. The analysis of the Hirshfeld surfaces reveals that only compound 3 exhibited a well-defined red spots, indicating intermolecular interactions identified as S-O⋯H, C-H⋯O and C-O⋯H contacts. Comparative fingerprint histograms of the three compounds show that close pair interactions are dominated by C-H⋯H-C contact. By UV-visible analysis, compound 1 showed the most intense absorbances at 407 and 441 nm, respectively. The radical scavenging activity explored in the DPPH test, shows that only 1 exhibited low anti-radical activity. Furthermore, cellular antioxidant capacity of benzoisothiazoles 1-3 was investigated with PMA-activated HL-60 cells using chemiluminescence and fluorescence techniques in the presence of L-012 and Amplex Red probe, respectively. Results highlight that compound 1 exhibited moderate anti-ROS capacity while compounds 2 and 3 enhanced ROS production. The cytotoxicity test performed on HL-60 cells, using the MTS assay, confirmed the lack of toxicity of the tested benzoisothiazole 1 compared to 2 and 3 which show low cytotoxicity (≤30%). Anti-catalytic activity was evaluated by following the inhibitory potential of the benzoisothiazoles on MPO activity and depicted benzoisothiazoles-MPO interactions by docking. Both SIEFED and docking studies demonstrated an anti-catalytic activity of the tested benzoisothiazoles towards MPO with the best activity for compound 2.

摘要

烯炔和苯并异噻唑官能团存在于化合物 1、2 和 3 的分子结构中,预计会提供生化活性。在本工作中,我们首先研究了三个炔基取代的 3-亚基二氢苯并[d]异噻唑 1,1-二氧化物的分子表面接触。Hirshfeld 表面分析表明,只有化合物 3 表现出明显的红点,表明存在识别为 S-O⋯H、C-H⋯O 和 C-O⋯H 接触的分子间相互作用。三个化合物的比较指纹直方图表明,近对相互作用主要由 C-H⋯H-C 接触主导。通过紫外-可见分析,化合物 1 在 407 和 441nm 处分别显示出最强的吸收。在 DPPH 测试中研究的自由基清除活性表明,只有 1 表现出低的抗自由基活性。此外,用 PMA 激活的 HL-60 细胞,用化学发光和荧光技术,分别用 L-012 和 Amplex Red 探针研究了苯并异噻唑 1-3 的细胞抗氧化能力。结果表明,化合物 1 表现出中等的抗 ROS 能力,而化合物 2 和 3 增强了 ROS 的产生。用 MTS 测定法在 HL-60 细胞上进行的细胞毒性试验证实,与 2 和 3 相比,测试的苯并异噻唑 1 缺乏毒性,2 和 3 表现出低细胞毒性(≤30%)。通过测定苯并异噻唑对 MPO 活性的抑制潜力,评价了抗催化活性,并通过对接描绘了苯并异噻唑-MPO 相互作用。SIEFED 和对接研究均表明,测试的苯并异噻唑对 MPO 具有抗催化活性,化合物 2 的活性最佳。

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