Department of Food Science and Technology, College of Science and Convergence Technology, Seoul Women's University, 621, Hwarangro, Nowon-gu, Seoul 01797, Republic of Korea.
Major in Food Science & Biotechnology, Institute of Bio Engineering, College of Future Convergence, Eulji University, Seongnam 13135, Republic of Korea.
Molecules. 2024 May 24;29(11):2471. doi: 10.3390/molecules29112471.
Photosensitizers cause oxidative damages in various biological systems under light. In this study, the method for analyzing photosensitizing activity of various dietary and medicinal sources was developed using 1-(4,5-dimethylthiazol-2-yl)-3,5-diphenylformazan (thiazolyl blue formazan; MTT-F) as a probe. Significant and quantitative decolorization of MTT-F was observed in the presence of photosensitizers used in this study under light but not under dark conditions. The decolorization of MTT-F occurred irradiation time-, light intensity-, and photosensitizer concentration-dependently. The decolorized MTT-F was reversibly reduced by living cells; the LC-MS/MS results indicated the formation of oxidized products with -1 / of base peak from MTT-F, suggesting that MTT-F decolorized by photosensitizers was its corresponding tetrazolium. The present results indicate that MTT-F is a reliable probe for the quantitative analysis of photosensitizing activities, and the MTT-F-based method can be an useful tool for screening and evaluating photosensitizing properties of various compounds used in many industrial purposes.
光敏剂在光照下会引起各种生物系统的氧化损伤。在这项研究中,使用 1-(4,5-二甲基噻唑-2-基)-3,5-二苯基甲臢(噻唑蓝甲臢;MTT-F)作为探针,开发了分析各种饮食和药用来源的光敏活性的方法。在光照下,但在黑暗条件下,本研究中使用的光敏剂存在时,观察到 MTT-F 明显且定量的褪色。MTT-F 的褪色与光照时间、光强度和光敏剂浓度有关。活细胞可逆地还原褪色的 MTT-F;LC-MS/MS 结果表明,从 MTT-F 形成了 -1/ 的基峰的氧化产物,表明光敏剂褪色的 MTT-F 是其相应的四唑。本研究结果表明,MTT-F 是定量分析光敏活性的可靠探针,基于 MTT-F 的方法可以成为筛选和评估用于许多工业目的的各种化合物的光敏特性的有用工具。