Goldberg Research Institute of Pharmacology and Regenerative Medicine, Tomsk National Research Medical Center, Russian Academy of Sciences, Tomsk, Russia.
Kizhner Research Center, Tomsk Polytechnic University, Tomsk, Russia.
Bull Exp Biol Med. 2024 Oct;177(6):741-744. doi: 10.1007/s10517-024-06261-2. Epub 2024 Oct 23.
We studied the radical-binding and antioxidant activities of the alkaloid tryptanthrin (TR) and its new synthetic derivative tryptanthrin oxime (TR-Ox), as well as the cytoprotective activity of TR-Ox under conditions of oxidative stress. The antiradical activity of TR-Ox was revealed in the test of binding with stable chromogen radical 2,2-diphenyl-1-picrylhydrazyl and in the superoxide radical generation test (riboflavin photoreduction reaction with detection by NBT reduction). TR-Ox was inferior to ionol and dihydroquercetin by the antiradical activity. In these tests, TR did not exhibit antiradical activity. TR-Ox did not show iron-chelating activity (in the test with the formation of the o-phenanthroline-Fe complex and its destruction in the presence of chelating agents). In brain homogenate, TR-Ox significantly reduced the increase in spontaneous chemiluminescence. Under conditions of oxidative stress induced by 15 mM HO in the SH-SY5Y neuroblastoma cell culture, TR-Ox exhibited cytoprotective activity and increased the number of viable cells.
我们研究了生物碱色胺酮(TR)及其新合成衍生物色胺酮肟(TR-Ox)的自由基结合和抗氧化活性,以及 TR-Ox 在氧化应激条件下的细胞保护活性。TR-Ox 的抗自由基活性在与稳定的显色自由基 2,2-二苯基-1-苦基肼结合的测试中和在超氧自由基生成测试(核黄素光还原反应,通过 NBT 还原检测)中得到揭示。TR-Ox 在抗自由基活性方面逊于依诺醇和二氢槲皮素。在这些测试中,TR 没有表现出抗自由基活性。TR-Ox 没有表现出铁螯合活性(在形成邻菲咯啉-Fe 配合物的测试中和在螯合剂存在下破坏该配合物的测试)。在脑匀浆中,TR-Ox 显著降低了自发化学发光的增加。在 SH-SY5Y 神经母细胞瘤细胞培养物中由 15 mM HO 诱导的氧化应激条件下,TR-Ox 表现出细胞保护活性并增加了存活细胞的数量。