Division of Cell and Molecular Biology, PG and Research Department of Zoology, St. Joseph's College Devagiri (Autonomous), Calicut 673008, Kerala, India.
Molecular Microbial Ecology Lab, PG and Research Department of Zoology, St. Joseph's College Devagiri (Autonomous), Calicut 680555, Kerala, India.
Molecules. 2023 Aug 30;28(17):6354. doi: 10.3390/molecules28176354.
Plant secondary metabolites are important sources of biologically active compounds with wide pharmacological potentials. Among the different classes, the chalcones form integral pharmacologically active agents. Natural chalcones and bis-chalcones exhibit high antioxidant and anti-inflammatory properties in various experiments. Studies are also underway to explore more biologically active bis-chalcones by chemical synthesis of these compounds. In this study, the effects of six synthetic bis-chalcones were evaluated in intestinal epithelial cells (IEC-6); further, the anti-inflammatory potentials were studied in lipopolysaccharide-induced cytokine production in macrophages. The synthesized bis-chalcones differ from each other first of all by the nature of the aromatic cores (functional group substitution, and their position) and by the size of a central alicycle. The exposure of IEC-6 cells to peroxide radicals reduced the cell viability; however, pre-treatment with the bis-chalcones improved the cell viability in these cells. The mechanism of action was observed to be the increased levels of glutathione and antioxidant enzyme activities. Further, these bis-chalcones also inhibited the LPS-stimulation-induced inflammatory cytokine production in RAW 264.7 macrophages. Overall, the present study indicated the cytoprotective and anti-inflammatory abilities of synthetic bis-chalcones.
植物次生代谢物是具有广泛药理潜力的生物活性化合物的重要来源。在不同的类别中,查耳酮形成完整的药理活性物质。天然查耳酮和双查耳酮在各种实验中表现出高抗氧化和抗炎特性。目前还在进行研究,通过这些化合物的化学合成来探索更多具有生物活性的双查耳酮。在这项研究中,评估了六种合成双查耳酮在肠上皮细胞(IEC-6)中的作用;此外,还研究了它们在脂多糖诱导的巨噬细胞细胞因子产生中的抗炎潜力。合成的双查耳酮首先在芳香核(官能团取代及其位置)和中环的大小上彼此不同。过氧化物自由基暴露会降低 IEC-6 细胞的存活率;然而,用双查耳酮预处理可提高这些细胞的细胞活力。观察到的作用机制是谷胱甘肽水平的增加和抗氧化酶活性的增加。此外,这些双查耳酮还抑制了 RAW 264.7 巨噬细胞中 LPS 刺激诱导的炎症细胞因子产生。总的来说,本研究表明合成双查耳酮具有细胞保护和抗炎作用。