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研究了由核黄素-5'-磷酸在蓝光或紫光下产生的活性氧对 WiDr 结肠癌细胞抑制作用的影响。

An investigation of the influence of reactive oxygen species produced from riboflavin-5'-phosphate by blue or violet light on the inhibition of WiDr colon cancer cells.

机构信息

Department of Biotechnology, Ming Chuan University, GuiShan 33343, Taiwan.

Department of Tourism and Leisure, Hsing Wu University, New Taipei City 24452, Taiwan.

出版信息

Photodiagnosis Photodyn Ther. 2023 Dec;44:103810. doi: 10.1016/j.pdpdt.2023.103810. Epub 2023 Sep 23.

Abstract

Riboflavin-5'-phosphate (FMN), an innocuous product of riboflavin (RF) phosphorylation, is vital for humans. FMN is sensitive to light illumination, as indicated by reactive oxygen species (ROS) formation. This investigation was undertaken to evaluate the influence of blue light illumination (BLI) and violet light illumination (VLI) upon FMN to develop a method to inhibit WiDr colon cancer cells by FMN photolysis. When FMN is subjected to BLI and VLI, it inhibits WiDr colon cancer cells by generating superoxide radical anions (O). The respective reduction rates are 42.6 and 81.9 % in WiDr colon cancer cells for FMN treated with BLI and VLI at 20 W/m for 0.5 h. FMN treated with VLI inhibits WiDr colon cancer cells more effectively than BLI. Propidium iodide (PI) is a fluorescent dye that is used to detect abnormal DNA due to cell death by apoptosis or necrosis. The PI-positive count for nuclei increased significantly for the WiDr colon cancer cells that were treated with FMN under VLI at 20 W/m for 0.5 h. FMN photolysis achieved using VLI allows efficient photodynamic therapy (PDT) by triggering the cytotoxicity of FMN on WiDr colon cancer cells.

摘要

核黄素-5'-磷酸(FMN)是核黄素(RF)磷酸化的无害产物,对人类至关重要。FMN 对光照很敏感,会形成活性氧(ROS)。本研究旨在评估蓝光照射(BLI)和紫光照射(VLI)对 FMN 的影响,以开发一种通过 FMN 光解抑制 WiDr 结肠癌细胞的方法。当 FMN 受到 BLI 和 VLI 照射时,会通过生成超氧阴离子自由基(O)来抑制 WiDr 结肠癌细胞。在 20 W/m 下照射 0.5 小时后,BLI 和 VLI 处理的 FMN 分别使 WiDr 结肠癌细胞的还原率达到 42.6%和 81.9%。VLI 处理的 FMN 比 BLI 更有效地抑制 WiDr 结肠癌细胞。碘化丙啶(PI)是一种荧光染料,用于检测由于细胞凋亡或坏死导致的异常 DNA。在 20 W/m 下用 VLI 处理 0.5 小时后,FMN 使 WiDr 结肠癌细胞的 PI 阳性核计数显著增加。VLI 引发的 FMN 光解可通过触发 FMN 对 WiDr 结肠癌细胞的细胞毒性,实现高效光动力疗法(PDT)。

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