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Updated: Jan 16, 2026

Inactivation of Pathogens via Visible-Light Photolysis of Riboflavin-5′-Phosphate
Published on: April 6, 2022
Engineered riboflavin-cerium oxide nanoparticles for enhanced phototoxicity toward triple-negative breast cancer
Anongnat Wongpan1, Sopon Nuchpun1, Napasorn Tana-Atsawapon1
1Department of Biochemistry, Faculty of Science, Mahidol University Bangkok 10400 Thailand anongnat.won@gmail.com nuchpun.s@gmail.com napasorn.taa@student.mahidol.edu kanlaya.pra@mahidol.ac.th.
Abstract:
Cerium oxide nanoparticles (CeO2 NPs) are redox-active nanomaterials with promising applications in biomedical engineering. In this study, CeO2 NPs are functionalized with riboflavin to enhance cellular uptake and introduce photoresponsive properties. In vitro studies demonstrate that the resulting riboflavin-modified CeO2 (Rf-CeO2) NPs exhibit low toxicity under dark conditions but exert significantly enhanced cytotoxicity against triple-negative breast cancer (TNBC) MDA-MB-231 cells upon ultraviolet (UV) irradiation. This light-triggered cytotoxic effect is attributed to the photoactive nature of riboflavin, which alters reactive oxygen species (ROS) generation upon UV exposure. Our findings highlight the potential of Rf-CeO2 NPs as a selectively light-activated nanoplatform for targeted cancer therapy that integrates redox functionality and photoactivity into a single engineered nanomaterial, particularly for TNBC and other aggressive cancer subtypes.

